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A  ÏÙàÑßÊ(adenine)

abortive transduction Á÷²úתµ¼£º×ªµ¼µÄDNAƬ¶ÎÄ©¶Ë²ôÈëµ½ÊÜÌåµÄȾɫÌåÖУ¬ÔÚºó´úÖжªÊ§¡£

acentric chromosome  ¶Ë×ÅË¿Á£È¾É«Ì壺 ȾɫÌåµÄ×ÅË¿Á£ÔÚ×îÄ©¶Ë¡£

Achondroplasia Èí¹Ç·¢Óý²»È«£º ÈËÀàµÄÒ»ÖÖ³£È¾É«ÌåÏÔÐÔÒÅ´«²¡£¬±íÐÍΪËÄÖ«´Ö¶Ì£¬°°±Ç£¬Ñü׵ǰ͹¡£

acrocetric chromosome  ½ü¶Ë×ÅË¿Á£È¾É«Ì壺×ÅË¿Á£Î»ÓÚȾɫÌåÄ©¶Ë¸½½ü¡£

active site  »îÐÔλµã£º µ°°×ÖʽṹÖоßÓÐÉúÎï»îÐԵĽṹÓò¡£

adapation  ÊÊÓ¦£ºÔÚ½ø»¯ÖÐһЩÉúÎïµÄ¿ÉÒÅ´«ÐÔ×´·¢Éú¸Ä±ä£¬Ê¹ÆäÔÚÒ»¶¨µÄ»·¾³ÄܸüºÃµØÉú´æºÍ·±Ö³¡£

adenine ÏÙàÑßÊ£º ÔÚDNAÖкÍÐØÏÙà×à¤Åä¶ÔµÄ¼î»ù¡£

albino  °×»¯Ì壺 Ò»ÖÖ³£È¾É«ÌåÒþÐÔÒÅ´«Í»±ä¡£¶¯Îï»òÈËµÄÆ¤·ô¼°Ã«·¢³Ê°×É«£¬Ö÷ÒªÒòΪÔÚºÚÉ«ËØºÏ³É¹ý³ÌÖУ¬¿ØÖƺϳÉÀÒ°±ËáøµÄ»ùÒò·¢ÉúÍ»±äËùÖ¡£

allele  µÈλ»ùÒò£ºÒ»¸ö×ùλÉϵĻùÒòËù¾ßÓеļ¸ÖÖ²»Í¬ÐÎʽ֮һ¡£

allelic frequencies (one frequencies)  ÔÚȺÌåÖдæÔÚÓÚËùÓиöÌåÖÐijһ¸ö×ùλÉϵÈλ»ùÒòµÄƵ ÂÊ¡£

allelic exclusion µÈλÅų⣺ ÔÓºÏ״̬µÄÃâÒßÇòµ°°×»ùÒò×ùλÖУ¬Ö»ÓÐÒ»¸ö»ùÒòÒòÖØÅŶøµÃÒÔ±í´ï£¬ÆäµÈλ»ùÒò²»ÔÙÖØÅŶøÎÞ»îÐÔ¡£

allopolyploicly  ÒìÔ´¶à±¶Ì壺¶à±¶ÌåµÄÉúÎïÖÐÓÐÒ»Ì×»ò¶àÌ×ȾɫÌåÀ´Ô´ÓÚ²»Í¬ÎïÖÖ¡£

Ames test °£Ä·Ë¹²âÑé·¨£º Bruce Ames ÓÚ1970ÄêÈËÓÃÊóÉ˺®É³ÃÅÊϾú£¨´óÊ󣩸Î΢Á£Ìå·¨À´¼ì²âijЩÎïÖÊÊÇ·ñÓÐÓÕ±ä×÷Óá£

amino acids °±»ùË᣺Êǹ¹³Éµ°°×ÖʵĻù±¾µ¥Î»£¬×ÔÈ»½çÖдæÔÚ20ÖÖ²»Í¬µÄ°±»ùËá¡£

aminoacyl-tRNA °±»ùõ£- tRNA£ºtRNAµÄ°±»ù±ÛÉϽáºÏÓÐÏàÓ¦µÄ°±»ùËᣬ²¢½«°±»ùËáÔËתµ½ºËÌÇÌåÉϺϳɵ°°×ÖÊ¡£

aminoacyl-tRNA synthetase °±»ùõ£- tRNAºÏ³Éø£º´ß»¯Ò»¸öÌØ¶¨µÄtRNA½áºÏµ½ÏàÓ¦µÄtRNA·Ö×ÓÉÏ¡£ÒòÓÐ20ÖÖ°±»ùËᣬ¹ÊÓÐ20ÖÖ°±»ùõ£- tRNAºÏ³Éø¡£

amniocentesis  ÑòĤ´©´ÌÊõ£º²úǰÕï¶ÏÖÐÒ»ÖÖ²ÉÑòË®µÄ·½·¨¡£

amorph  ÎÞЧµÈλ»ùÒò£ºÒ»ÖÖÍ»±äµÄÐÎʽ£¬Í»±äºóµÄ»ùÒò²»ÄÜÖ¸ÁîºÏ³ÉÓй¦Äܵĵ°°×ÖÊ¡£

amphiodiploid  Ë«¶þ±¶Ì壺¼´ÒìÔ´Ëı¶Ìå¡£

amplification  À©Ôö£ºÐí¶àDNA¿½±´µÄ²úÎïÀ´×ÔDNAµÄÒ»¸öÖ÷񻂿Óò¡£

aneuploid  ·ÇÕû±¶Ì壺һÖÖȾɫÌåÊýÄ¿µÄ±äÒìÌ壬ϸ°ûÖÐÔö¼Ó»ò¼õÉÙÒ»Ìõ»ò¼¸ÌõȾɫÌå¡£

annealing  Í˻𣺼´DNA¸´ÐÔ£¬½µµÍζÈʹÁ½ÌõDNAµ¥Á´ÖØÐ»¥²¹½áºÏÐγÉË«Á´µÄ¹ý³Ì¡£

antibody  ¿¹Ì壺 Ò»ÖÖÃâÒßµ°°×·Ö×Ó£¬ÓÉÃâÒßϵͳ²úÉú£¬¿Éʶ±ðÌØÒ쿹ԭ²¢ÓëÖ®½áºÏ¡£

anticodon  ·´ÃÜÂë×Ó£ºÔÚtRNAµÄ·´ÃÜÂë×Ó»·ÉϵÄÈý¸öÏàÁ¬µÄ¼î»ù¿ÉºÍmRNAÉϵÄÃÜÂë×Ó

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antigen  ¿¹Ô­£ºÈκÎÒ»Öֿɴ̼¤»úÌå²úÉú¿¹Ì壬²¢ÄÜÓëÖ®ÌØÒì½áºÏµÄ´ó·ÖÖ®ÎïÖÊ¡£

AP site  APλµã£º¼´ÍÑà×à¤ÍÑàÑßʵÄλµã£¬ÓÉDNAÉϼî»ùÌÇÜÕÁ´µÄ¶ÏÁÑÐγɣ¬ÔÚÐÞ¸´Ê±¿É¹©ÍÑà×à¤àÑßÊÄÚÇÐøʶ±ð¡£

ascospore  ×ÓÄÒæß×Ó£ºÄ³Ð©Õæ¾ú²úÉúµÄÓÐÐÔæß×Ó£¬Î»ÓÚ×ÓÄÒÖУ¬Îªµ¥±¶ÐÔ£¬³£³ÊÏß×´ÅÅÁС£

attached X ²¢ÁªXȾɫÌ壺һ¶Ô¹ûÓ¬µÄXȾɫÌå¶Ë¶ËÏàÁ¬£¬×÷Ϊһ¸öµ¥Î»½øÐÐÒÅ´«¡£

attenuator  Ë¥¼õ×Ó»òÈõ»¯×Ó£º ÔÚÉ«°±Ëá²Ù×Ý×ӽṹ»ùÒòÖеÄÒ»¸öÇøÓò£¬´ËÇøÓòÒÔÐγɲ»

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autonomous replication sequence (ARS) ×ÔÖ÷¸´ÖÆÐòÁУº½ÍĸDNAÖеÄÒ»¸öÌØÊâÆ¬¶Ï,Ϊ¸´

ÖÆÆôʼËùÐ裬ÊǸ´ÖÆÏµÍ³µ°°×ʶ±ðºÍ½áºÏµÄλµã¡£

autoplouploid  Í¬Ô´¶à±¶Ì壺ͨ¹ýµ¥Ì×»ùÒò×é¼Ó±¶¶øÐγɵĶ౶Ìå¡£

autoradiography  ·ÅÉä×ÔÏÔÓ°£º·ÅÉäÐÔ±ê¼ÇÔÚ×éÖ¯»òDNAÖÐ×Ô¶¯Ê¹X½ºÆ¬±©¹âµÄ¹ý³Ì¡£

autoregulation  ×ÔÎÒµ÷½Ú£º»ùÒòͨ¹ý×ÔÉíµÄ²úÎïÀ´µ÷½Úת¼¡£

autosome  ³£È¾É«Ì壺ÐÔȾɫÌåÒÔÍâµÄÈκÎȾɫÌå¡£

auxotroph  ÓªÑøÈ±ÏÝÐÍ£ºÎ¢ÉúÎïµÄÒ»ÖÖÍ»±äÌ壬Ëü²»ÄܺϳÉÉú³¤ËùÐèµÄÎïÖÊ£¬ÅàÑøÊ±±ØÐëÔÚÅàÑø»ùÖмÓÈë´ËÎïÖʲÅÄÜÉú³¤¡£

back mutation »Ø¸´Í»±ä£º¼ûreversion

bacteriophage (phage)  Ò»ÖÖ¸ÐȾϸ¾úµÄ²¡¶¾¡£

balance model  Æ½ºâÄ£ÐÍ£º¹ØÓÚÒÅ´«±äÒì±ÈÀýµÄÒ»ÖÖÄ£ÐÍ£¬ËüÈÏΪ×ÔȻѡÔñά³ÖÁËȺÌåÖдóÁ¿ÒÅ´«±äÒìµÄ´æÔÚ¡£

balanced polymorphism ƽºâ¶à̬ÏÖÏó£º Îȶ¨µÄÒÅ´«¶à̬ÏÖÏóÊÇÓÉ×ÔȻѡÔñÀ´Î¬³ÖµÄ¡£

Barr body °ÍÊÏСÌ壺ÔÚÕý³£´ÆÐÔ²¸È鶯ÎïµÄºËÖÐÓÐÒ»¸ö¸ß¶ÈÄý¾ÛµÄȾɫÖÊÍÅ£¬ËüÊÇÒ»¸öʧ»îµÄXȾɫÌå¡£

base analog ¼î»ùÀàËÆÎ Ò»ÖÖ»¯Ñ§ÎïÖÊ£¬Æä·Ö×ӽṹºÍDNAµÄ¼î»ùÏàËÆ£¬ÔÚDNAµÄ´úл¹ý³ÌÖÐÓÐʱ»áÈ¡´úÕý³£¼î»ù£¬½á¹ûʹDNAµÄ¼î»ù·¢ÉúÍ»±ä¡£

bead theory ´®Öéѧ˵£ºÒѱ»·ñ¶¨µÄѧ˵£¬ÈÏΪ»ùÒò¸½×ÅÔÚȾɫÌåÉÏ£¬¾ÍÏóÏîÁ´ÉϵĴ®Öé¡£Ëü¼ÈÊÇÍ»±äµ¥Î»ÓÖÊÇÖØ×鵥λ¡£

binary fission  ¶þ·Ö·ÖÁÑ£ºÒ»¸öϸ°û·ÖÁÑΪ´óСÏà½üµÄÁ½¸ö×Óϸ°ûµÄ¹ý³Ì¡£

binomial distribution ¶þÏî·Ö²¼£º¾ßÓÐÁ½ÖÖ¿ÉÄܽá¹ûµÄ

biparental zygote Ë«Ç׺Ï×Ó£º ÓÖ³ÆË«Ç×ÒÅ´«(biparental  inheriance)£¬ÒÂÔå(chlamydomonas)

µÄºÏ×Óº¬ÓÐÀ´×ÔË«Ç×µÄDNA¡£ÕâÖÖϸ°ûÒ»°ãºÜÉÙ¼û¡£

biochemical mutation  Éú»¯Í»±ä£¬¼û×Ô·¢Í»±ä(autotrophic mutation)¡£

bivalent  ¶þ¼ÛÌ壺ÔÚµÚÒ»´Î¼õÊý·ÖÁÑʱ±Ë´ËÁªºÏµÄÒ»¶ÔͬԴȾɫÌå¡£

bottleneck effect Æ¿¾±Ð§Ó¦£ºÒ»ÖÖÀàÐÍµÄÆ¯±ä¡£µ±ÈºÌåºÜСʱ²úÉúÕâÖÖЧӦ£¬½á¹ûʹ»ùÒò×ùÖÐÓеĻùÒò¶ªÊ§ÁË¡£

branch-point sequence ·ÖÖ§µã˳Ðò£ºÔÚ²¸È鶯Îïϸ°ûÖеı£ÊØË³Ðò£ºYNCURAY(Y: à×à¤,R:àÑßÊ, N:Èκμî»ù)£¬Î»ÓÚºËmRNAÄÚº¬×ÓºÍII ÀàÄÚº¬×Ó3'¶Ë¸½½ü£¬ÆäÖеÄA¿Éͨ¹ý5'-2'Á¬½ÓµÄ·½Ê½ºÍÄÚº¬×Ó5'¶ËÏàÁ¬½Ó£¬ÔÚ¼ô½ÓʱÐγÉÌ×ÂíË÷×´½á¹¹¡£

broad-sense heritability ¹ãÒåÒÅ´«Á¦£º±íÐÍ·½²îÖÐËùº¬ÒÅ´«·½²îµÄ°Ù·Ö±È¡£

cotplot Ũ¶Èʱ¼ä³Ë»ýͼ£ºÒ»¸öÑù±¾µ¥Î»µ¥Á´DNA·Ö×Ó¸´ÐÔ¶¯Á¦Ñ§ÇúÏß¡£ÒÔ½áºÏΪ˫Á´µÄÁ¿Îª×Ý×ø±ê£¬ÒÔDNAŨ¶ÈºÍʱ¼äµÄ³Ë»ýΪºá×ø±ê×÷³öµÄDNA¸´ÐÔ¶¯Á¦Ñ§ÇúÏß

C value  CÖµ£ºÉúÎïµ¥±¶Ìå»ùÒòËùº¬µÄDNA×ÜÁ¿¡£

CAAT element  CAATÔª¼þ£ºÕæºËÆô¶¯×ÓÉÏÓÎÔª¼þÖ®Ò»£¬³£Î»ÓÚÉÏÓÎ-80bp¸½½ü£¬Æä¹¦ÄÜÊÇ¿ØÖÆ×ªÂ¼ÆðʼƵÂÊ£¬±£ÊØË³ÐòÊÇ 5'-GGCCAATCT-3'¡£

cancer  °©£º¶ñÐÔÖ×Áö£¬Ï¸°ûʧ¿Ø£¬Òì³£·ÖÁÑÇÒÔÚÉúÎïÌåÄڿɲ¥É¢¡£

5'-capping -5'¼Óñ£ºÔÚ mRNA¼Ó¹¤µÄ¹ý³ÌÖÐÔÚǰÌå mRNA·Ö×ÓµÄ5'¶Ë¼ÓÉϼ׻ùºËÜÕËáµÄ "ñ×Ó"¡£

catabolite repression (glucose effect) ·Ö½â´úлÎï×è¶ô£¨ÌÇЧӦ£©£ºµ±ÌÇ´æÔÚʱÄÜÓÕ·¢Ï¸¾ú²Ù×Ý×ÓµÄʧ»î£¬¼´Ê¹²Ù×Ý×ÓµÄÓÕµ¼Îï´æÔÚÒ²ÊÇÈç´Ë¡£

cDNA  »¥²¹DNA£ºÒÔmRNAΪģ°å£¬ÒÔ·´×ªÂ¼Ã¸´ß»¯ºÏ³ÉµÄDNAµÄ¿½±´¡£

cDNA clone  cDNA·Ö×Ó¿Ë¡£º½«cDNAƬ¶Î×°ÔÚÔØÌåÉÏת»¯Ï¸¾úÀ©Ôö³ö¶à¿Ë¡µÄ¹ý³Ì£¬×îÖտɽ¨Á¢cDNAÎĿ⡣

cDNA library  cDNAÎĿ⣺ÊÕ¼¯¸÷cDNA·Ö×ӵĿË¡£¬¸÷ÖÖcDNA·Ö×ÓÊÇϸ°ûÖÐ×ÜÌåmRNAµÄ¿½±´¡£

cell division ϸ°û·ÖÁÑ£ºÒ»¸öϸ°û·ÖÁѲúÉúÁ½¸ö×Óϸ°ûµÄ¹ý³Ì¡£

cell-free, protein-synthesizing system  ÎÞϸ°ûµ°°×ºÏ³Éϵͳ£ºÊDZí´ïϵͳ֮һ£¬´Ëϵͳº¬ÓкËÌÇÌå¡¢tRNAºÍ¸÷ÖÖ°±»ùËá¼°ÌåÍâºÏ³É¶àëÄËù±ØÐëµÄһϵÁе°°×Òò×Ó¡£Ö»Òª¼ÓÈëmRNA¼´¿É±í´ï¡£

cellular oncogene (c-onc)  Ï¸°û°©»ùÒò£ºÔÚ¶¯Îïϸ°ûÖдæÔÚµÄһЩ»ùÒò£¬ËüÃǾßÓÐÕý³£µÄ¹¦ÄÜ£¬       µ«Ò»µ©Í»±ä»áµ¼ÖÂϸ°ûµÄ°©±ä¡£

centi-Morgan (cM)  ·ÖĦ£ºÊÇ×÷ͼµ¥Î»£¬Ï൱ÓÚ1¸öͼ¾àµ¥Î»¡£

centromere (kinetochore) ×ÅË¿Á££¨×ÅË¿µã£©£ºÈ¾É«ÌåÉϵÄÌØÊâÇøÓò£¬ÔÚÏÔ΢½ø¾µÏ¿ɿ´µ½µÄÒ»Öֽṹ¡£ÔÚϸ°û·ÖÁÑʱÊÇ·Ä´¸Ë¿¸½×Å´¦¡£

chain-teminatiog codon Á´-ÖÕÖ¹ÃÜÂë×Ó£ºÈý¸öÎÞÒåÃÜÂë×Ó¡£ÔÚµ°°×ÖʺϳÉʱºËÌÇÌåÔĶÁÕâЩÃÜÂë×ÓʱÖÕÖ¹ºÏ³É¡£

charged  tRNA  ¸ºÔØtRNA£ºÒÑ´øÓÐÏàÓ¦°±»ùËáµÄtRNA¡£

chiasma ½»²æ£ºÔÚ½»»»Ê±Ò»¶ÔȾɫÌå³öÏֵĽ»²æÐͽṹ¡£ÔÚÓÐË¿·ÖÁѵÄË«ÏßÆÚ¿ÉÒÔÔÚÏÔ΢½ø¾µÏ¿´µ½¡£

chimere  Ç¶ºÏÌ壺һÖÖÒìԴǶºÏÌ壬¿ÉÄÜÓÉÁ½¸ö²»Í¬µÄÊܾ«ÂÑż¶ûÈں϶ø³É¡£

chi-square test ¿¨·½¼ì²â£ºÒ»ÖÖ¼ì²âÀíÂÛÖµÓë¹Û²ìÖµÖ®¼äÓÐÎÞ²îÒìµÄÒ»ÖÖͳ¼Æ·½·¨¡£

chloroplast  Ò¶ÂÌÌ壺ֲÎïÖнøÐйâºÏ×÷ÓõÄÒ»ÖÖϸ°ûÆ÷£¬ÄÚÓÐË«Á´DNA¡£

chromatid  È¾É«µ¥Ì壺¸´ÖƺóÁ½¸öȾɫÌå×ÅË¿Á£ÏàÁ¬£¬ÆäÖеÄÈÎÒâÒ»Ìõ³ÆÎªÈ¾É«µ¥Ìå¡£

chromatin  È¾É«ÖÊ£ºÈ¾É«ÌåµÄ»ùÖÊ£¬Ëü°üº¬DNA¡¢È¾É«Ìåµ°°×ºÍȾɫÌåRNA¡£

chromocener  È¾É«ÖÐÐÄ£º¶àÏßȾɫÌ帽×ÅÔÚÒ»ÆðµÄ¹ý³Ì¡£

chromomere  È¾É«Á££ºÔÚ¼õÊý·ÖÁѺÍÓÐË¿·ÖÁÑǰÆÚ¿É¹Û²ìµ½È¾É«ÌåÉϵÄСÖé×´½á¹¹¡£

chromosome  È¾É«Ì壺»ùÒò¶ËÏàÁ¬£¬Ïß×´ÅÅÁУ¬ÓÐʱ½áºÏµ°°×ÖʺÍRNA¡£

chromosome aberration  È¾É«Ìå»û±ä£ºÈ¾É«Ìå½á¹¹ºÍÊýÄ¿µÄ¸Ä±ä¡£

chromosomal interference  È¾É«Ìå¸ÉÉæ£ºÓÉÓÚȾɫµ¥ÌåµÄ¶ÏÁѺÍÖØ½Ó¶øµ¼ÖµÄÎïÀí¸ÉÉæ£¬×è°­Á˵ڶþ´Î½»»»µÄ·¢Éú¡£

chromosome theory of heredity  ÒÅ´«µÄȾɫÌåѧ˵£ºÈÏΪȾɫÌåÊÇ»ùÒòµÄÔØÌå¡£´Ëѧ˵ÊÇÓÉSutton ºÍBoveri ¸÷×Ô¶ÀÁ¢Ìá³öµÄ¡£ËûÃǵÄÒÀ¾ÝÊÇȾɫÌå´«µÝºÍ»ùÒò´«µÝµÄƽÐÐÐÔ¡£

chromosome map  È¾É«Ìåͼ£º¼ûÁ¬ËøÍ¼£¨linkage map£©¡£

chromosome puff  È¾É«ÌåÊèËÉ£ºÈ¾É«ÌåµÄijЩλÖÃÉϲúÉúÅòËÉ£¬´ËλÖÃÊÇת¼»îÐÔλµã¡£

shromosome rearrangement  È¾É«ÌåÖØÅÅ£ºÉæ¼°µ½È¾É«ÌåÖØÐÂÁ¬½ÓµÄÍ»±ä¡£

chromosome set  È¾É«Ìå×飺һ×éȾɫÌ壬¶ÔÓÚÌØÒìÎïÖÖЯ´øÒ»Ì×»ù±¾ÒÅ´«ÐÅÏ¢¡£

chromosome walking   È¾É«Ìå²½ÒÆ£ºÒ»ÖÖ·ÖÎöÕæºËÉúÎï´óƬ¶ÏDNAµÄ·½·¨£¬³£ÓÃÀ´´Ó»ùÒòÎÄ¿âÖÐÉ¸Ñ¡ÌØ¶¨µÄÖØ×é DNA¿Ë¡¡£»ùÒòÎÄ¿âÖбØÐë°üº¬È¾É«ÌåµÄÈ«²¿DNAÐòÁУ¬ÕâЩÐòÁÐÊÇһϵÁÐÓв¿·ÖÖØµþµÄƬ¶Ï¡£´Óij¸öÒѼø¶¨µÄ¿Ë¡»ùÒò»òÐòÁпªÊ¼×öһϵÁеĿË¡ÔÓ½»£¬Õâ¸ö»ùÒòÒÑÖªÓëÄ¿µÄ»ùÒòλÓÚͬһȾɫÌåÉÏ¡£ÒÔÒÑÖª»ùÒò×ö̽ÕëÈ¥µô³öº¬ÓÐÁÚ½üÐòÁеĿË¡£¬È»ºóÒÔÁÚ½üÐòÁÐ×ö̽ÕëÈ¥µô³öÓëËüÁÚ½üÐòÁеÄÁíÒ»¿Ë¡£¬ÒÀ´ÎÀàÍÆ£¬Ã¿´ÎÔÓ½»¾Í°ÑÒѼø¶¨µÄ»ùÒòÑØÈ¾É«ÌåÏòÇ°ÒÆÁËÒ»¶Î¡£

cis-conformation  Ë³Ê½¹¹Ïó£ºÔÚÔÓºÏ×ÓÖÐÉæ¼°µ½»ùÒòÖлùÒò´ØÖÐÁ½¸öÍ»±äλµã£¬ËüÃǵÄÅÅÁÐΪa1a2/++¡£

cis dominance  Ë³Ê½ÏÔÐÔ£ºÒ»¸ö»ùÒò¶ÔͬһÌõȾɫÌåÉÏÏÂÒ»¸ö»ùÒòÓÐÓ°ÏìÄÜÁ¦¡£

cis-tran test  Ë³·´²âÑ飺¼´»¥²¹²âÑ顣ͨ¹ý²âÑé¿ÉÈ·¶¨Á½¸ö±íÐÍЧӦÏàËÆµÄÍ»±äλµãÊÇ·ñλÓÚͬһ¸ö˳·´×Ó»ò»ùÒòÄÚ¡£

cis-tran  Ë³·´×Ó£ºÔ­À´¶¨ÒåΪһ¸öÒÅ´«µÄ¹¦Äܵ¥Î»£¬Ë³·´×ÓÄÚ²¿µÄÁ½¸öÍ»±äλµã²»ÄÜ»¥²¹¡£ÏÖÔÚËüÓë»ùÒòµÄº¬ÒåÏàͬ£¬ÊDZàÂëÓй¦ÄܵÄRNA·Ö×Ó¡£

classical model  ¾­µäÄ£ÐÍ£ºÈºÌåÒÅ´«Ñ§ÖжÔÓÚÒÅ´«±äÒì½âÊ͵ÄÒ»ÖÖѧ˵£¬Ìá³öº¬ÓнÏÉÙÒÅ´«±äÒìµÄ×ÔȻȺÌåÊǶÔÒ»¸öµÈλ»ùÒòÓкÜÇ¿µÄÑ¡Ôñ×÷ÓõĽá¹û¡£

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DNA polymerase  DNA¾ÛºÏø£ºÒ»ÖÖ´ß»¯DNAºÏ³ÉµÄø¡£

DNA polymerase I  DNA¾ÛºÏøI £º E.coli Öд߻¯DNAºÏ³ÉµÄø£¬Ô­³Æ Kornbergø£¬ËüÖ÷Òª¸ºÔðËðÉ˵ÄÐÞ¸´ºÍ¸ÔáªÆ¬¶ÏÖ®¼ä϶µÄÌî²¹¡£

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double infection Ë«¸ÐȾ»ò²¢¸ÐȾ£ºÓÃÁ½ÖÖ²»Í¬µÄÊɾúÌåͬʱ¸ÐȾϸ¾ú¡£

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gynandrommorph  ´ÆÐÛǶºÏÌ壺һÖÖ´ÆÐÔºÍÐÛÐԽṹǶºÏµÄ¸öÌå¡£ÕâЩ²¡Àý³£ÊÇÐÔȾɫÌåµÄǶºÏÌ壬ÈçÓÐЩϸ°ûº¬ÓдÆÐÔµÄȾɫÌ壬ÓÐЩϸ°ûº¬ÓÐÐÛÐÔµÄȾɫÌå¡£

half-chromosome conversion °ëȾɫÌåת±ä£ºÒ»ÖÖÀàÐ͵ĻùÒòת±ä£¬ÍƲâÓÉÓÚÔÚÕæ¾úÖдæÔÚ²»Ïàͬæ¢ÃÃæß×Ó£¬±íÏÖ·ÇÃϵ¶ûµÈλ±ÈÀý¡£

hapliod  µ¥±¶Ì壺¾ßÓÐÒ»¸ö¿½±´µÄ¸÷ȾɫÌåµÄϸ°ûºÍ¸öÌå¡£

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harlequin chromosome  »¨°ßȾɫÌ壺ÔÚDNA¸´ÖÆÊ±¼ÓÈë5-äåÄòà×à¤(5-BudR) £¬Ôò5-BudR¿É²åÈëDNA·Ö×ÓÖС£µ±Ë«Á´¶¼²åÈë 5-BudRʱÔòȾ²»ÉϼªÄ·Èø£¬¶øÒ»Ìõ²åÈë5-BudRÔò¿ÉȾɫ¡£Èôϸ°ûµÄÅàÑø»ù¼ÓÈë5-BudRÔòµÚ¶þ¸´ÖÆÖÜÆÚʱ£¬Á½Ìõæ¢ÃÃȾɫÌåȾɫ״¿ö²»Í¬£¬Ò»Ã÷Ò»°µ£¬³Æ»¨°ßȾɫÌå¡£

helix-loop-helix (HLH) protein  ÂÝÐý-»·- ÂÝÐýµ°°×£ºÒ»ÖֿɺÍÕæºËÉúÎïDNA½áºÏµÄת¼µ÷¿Øµ°°×¡£µ°°×ÒÔ¶þ¾ÛÌå´æÔÚ£¬Ã¿¸öµ°°×¶¼ÓÐÁ½¸öaÂÝÐý£¬Æä¼äÓÐÒ»¸ö»·Çø£¬Á½¸öµ°°×µÄÂÝÐýÄÚ²àΪÊèË®Çø£¬±Ë´Ë½áºÏ¡£

helix-turn-helix (HTH) protein   ÂÝÐý-ת½Ç-ÂÝÐýµ°°×£ºÒ»ÖÖºÍDNA½áºÏµÄµ÷¿Øµ°°×¡£ÓÉ´®ÁªµÄaÂÝÐý¹¹³É£¬aÂÝÐýÖ®¼äÐγÉת½Ç£¬HTH ³£½áºÏÓÚ´ó¹µ£¬³£Îª×è¶ôµ°°×¡£

hemizygous gene °ëºÏ×Ó»ùÒò£ºÔÚÐÛÌåÖеÄXÁ¬Ëø»ùÒò¡£ÒòÖ»ÓÐÒ»ÌõXȾɫÌ壬ËùÒÔÎÞÓëÖ®»¥²¹µÄµÈλ»ùÒò£¬¹Ê³Æ°ëºÏ×Ó»ùÒò¡£

hemoglobin (Hb) Ѫºìµ°°×£º´ó²¿·Ö¶¯ÎïµÄѪҺÖд«µÝÑõºÍ¶þÑõ»¯Ì¼µÄÖéµ°°×¡£

hemophilia  ÑªÓѲ¡£ºÈËÀàÖеÄÒ»ÖÖÒþÐÔXÁ¬ËøÒÅ´«²¡£¬±íÏÖΪѪҺÄý¹Ì»úÖÆÈ±ÏÝ¡£

heritability  ÒÅ´«ÂÊ¡¢ÒÅ´«Á¦£ºÔÚȺÌåÖÐÒÅ´«Òò×Ó¶Ô±íÐÍ·½²îµÄÓ°Ïì³Ì¶È£¬»òÕ¼ÓеıÈÀý¡£

hermaphroditic  Á½ÐԵģº¶¯ÎïÖÐͬʱ¾ßÓÐØºÍèºÍÂѳ²µÄ¸öÌå¡£ÔÚÖ²ÎïÖÐͬһ¶ä»¨ÖоßÓдÆÈïºÍÐÛÈïµÄÎïÖÖ¡£

hetetochromatin  ÒìȾɫÖÊ£ºÔÚϸ°ûÖÜÆÚÖб£³ÖÄý¾Û״̬µÄȾɫÖÊ£¬Í¨³£ÎÞ»îÐÔ¡£

heteroduplex   ÒìÔ´Ë«Á´£ºÓɲ»Í¬À´Ô´µÄÁ½ÌõDNAµ¥Á´ÍË»ð¶øÐγɵÄDNAË«ÂÝÐý¡£ÈôÁ½ÌõÁ´Ö®¼ä½á¹¹²»Í¬»á³öÏÖ»·»òÅÝ¡£

heteroduplex DNA model  ÒìÔ´Ë«Á´Ä£ÐÍ£ºÒ»ÖÖ½âÊͽ»»»ºÍ»ùÒòת±äµÄÄ£ÐÍ£¬Ä£ÐͼÙÉèÔÚ½»²æµÄ¸½½üÒìÔ´Ë«Á´DNA£¨ÓÉÁ½Ç×±¾DNAÐγɣ©Óж̵ÄÑÓÉì²úÉúÁ˽»»»ºÍ»ùÒòת±ä¡£

heterogametic sex ÒìÅäÐԱ𣺾ßÓÐÁ½ÖÖ²»Í¬ÐÍÐÔȾɫÌåµÄÐÔ±ð£¨Èç XYÐÛÐÔ£©£¬´Ë¸öÌå¿É²úÉú´øÓв»Í¬ÐÔȾɫÌåµÄÅä×Ó¡£

heterogeneous nuclear RNA (hnRNA) ²»¾ùÒ»ºË RNA£ºÔÚºËÄÚ´æÔÚµÄÒ»´óȺ²»Í¬´óСµÄ RNA·Ö×Ó£¬°üÀ¨mRNAǰÌåºÍÆäËûÀàÐ͵ÄRNA¡£

heterokaryon   ÒìºËÌ壺һÖÖÅàÑøÏ¸°û£¬ÔÚ°ûÖÊÖк¬ÓÐÁ½¸ö²»Í¬µÄºË¡£

heteromorphic chromosome   ÒìÐÍȾɫÌ壺һ¶Ô´óС¡¢ÐÎ̬»òȾɫ²»Í¬µÄͬԴȾɫÌå¡£

heterplasmon  ÒìÖÊÌ壺һ¸öϸ°ûº¬ÓÐÒÅ´«ÐÔ²»Í¬µÄ°ûÖÊ¡¢ÏßÁ£Ìå»òÒ¶ÂÌÌå¡£

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heterothallic fungus  Òì×ÚÅäºÏÕæ¾ú£ºÓеÄÕæ¾úÓÐÁ½ÖÖ½»ÅäÐÍ£¬ÈôÓÐÐÔÉúÖ³±ØÐëÔÚÁ½ÖÖ²»Í¬½»ÅäÐÍÖ®¼ä½øÐС£

heterozygous  ÔӺϵģº¶þ±¶ÌåÉúÎïÔÚÒ»¸ö»ò¶à¸ö×ùλÉÏÓв»Í¬µÄµÈλ»ùÒò¡£

heterozygosity ÔÓºÏÐÔ£ºÔÚÒ»¸ö×ùλÉÏÔÓºÏÌåµÄ±ÈÀý¡£

Hfr (high-frequency recombination) cell  ¸ßÆµÖØ×éϸ°û£ºE.coliÖÐÒ»ÖÖÐÛÐÔµÄϸ°û£¬ÆäFÒò×ÓÒÑÕûºÏµ½Ï¸¾úµÄȾɫÌåÖС£µ±ºÍ F- ϸ°û½áºÏʱ£¬¹©Ìå»ùÒòÒÔ½Ï¸ßÆµÂÊ´«µÝµ½ÊÜÌåϸ°ûÖУ¬²¢½øÐÐÖØ×飬²úÉú½ÓºÏºóÌå¡£

highly repetitive sequence  ¸ß¶ÈÖØ¸´Ë³Ðò£ºÔÚÕæºËÉúÎïÖдæÔÚµÄÒ»ÀàÖØ¸´Ë³Ðò£¬Öظ´´ÎÊýΪ105-107Ö®¼ä¡£

histocompatibility antigen  ×é֯Эͬ¿¹Ô­£º¾ö¶¨×éÖ¯ÒÆÖ²ÊǽÓÊÜ»¹ÊÇÅųâµÄÒ»ÖÖ¿¹Ô­¡£

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homeobox  Í¬Ô´ÒìÐÍ¿ò£ºÔÚµ÷½Ú·¢ÓýµÄµ°°×±àÂë˳ÐòÖдæÔÚµÄ180 bpµÄ±£ÊØË³Ðò¡£

homeodomain   Í¬Ô´ÒìÐÍÇøÓò£ºÔںܶàת¼Òò×ÓÖдæÔڵĸ߶ȱ£ÊصÄ60¸ö°±»ùËá˳Ðò£¬ÕâЩת¼Òò×ÓÄÜÐγÉHTH ½á¹¹ÓëÌØÒì˳ÐòDNA½áºÏ¡£

homeotic mutations   Í¬Ô´ÒìÐÍÍ»±ä£º¸Ä±äÌå½ÚÌØÕ÷µÄÍ»±ä£¬Ê¹Ò»¸öÌå½Ú±ä³ÉÁíÒ»Ìå½ÚµÄ¿½±´¡£

homogametic sex  Í¬ÅäÐԱ𣺴øÓÐÒ»¶ÔͬԴÐÔȾɫÌåµÄÐÔ±ð£¬ÈçXYÐÍÖеĴÆÐÔ£¨XX£©ºÍ ZWÐ͵ÄÐÛÐÔ£¨ZZ£©¡£

homolog  Í¬ÏµÎһ¶ÔͬԴȾɫÌåÖеÄÿ¸ö³ÉÔ±¡£

homologous chromosome   Í¬Ô´È¾É«Ì壺 ÔÚ¼õÊý·ÖÁÑÖÐÏ໥Åä¶ÔµÄȾɫÌ壬»òÔÚ½ø»¯ÖÐÀ´Ô´Í¬Ò»×æÏÈ£¬º¬ÓеĻùÒò×ùλÍêÈ«ÏàͬµÄȾɫÌå¡£

homozygote  ´¿ºÏ×Ó£º¾ßÓд¿ºÏ»ùÒòµÄ¸öÌå¡£

hormore response element (HRE)  ¼¤ËØÓ¦´ðÔª¼þ£º¼¤ËؽáºÏÓÚÊÜÌå¿É×÷ÓÃת¼Òò×Ó£¬HREÊǹ©¼¤ËØÊÜÌ帴ºÏÌå½áºÏ˳ʽµ÷½ÚDNA˳Ðò¡£

host range  ËÞÖ÷·¶Î§£ºÌض¨Æ·ÏµµÄÊɾúÌåÖ»ÄܸÐȾһ¶¨Æ·ÏµµÄϸ¾ú¡£

human genome project (HGP)  ÈËÀà»ùÒò×飨²âÐò£©¼Æ»®£ºÊÇWatson.TÌá³öÈËÀà»ùÒò×éÈ«ÐòÁзÖÎöµÄ¼Æ»®¡£ÈËÀà»ùÒò×éÔ¼ÓÐ3310 9 bp£¬º¬ÓÐ 5-10ÍòµÄ»ùÒò¡£

Huntington's disease  ºàÍ¢¶ÙÎ赸²¡£ºÈËÀೣȾɫÌåÏÔÐÔÒÅ´«²¡£¬³õÆÚÎªÃæ²¿Ô˶¯ºÍÊÖÊÆÔö¼Ó£¬Öð½¥·¢Õ¹Îª²»ËæÒâÎ赸¶¯×÷£¬ÍíÆÚ³öÏÖÍÌÑÊÀ§ÄѺͳմô£¬ÎåÊ®Ëê×óÓÒËÀÍö¡£

H-y antigen  H-Y¿¹Ô­£ºYȾɫÌåÁ¬ËøµÄH-Y×ùλ (histocompatibility locus) µÄ²úÎï¡£90Äê´úǰ±»ÈÏΪÊÇØºÍè¾ö¶¨Òò×ӵĺîÑ¡Õߣ¬ÏÖ±»·ñ¶¨¡£

hybrid  ÔÓÖÖ£º£¨1£©ÔÓºÏ×Ó£»£¨2£©Èκβ»Í¬»ùÒòÐ͵ÄÇ×´úÔÓ½»Ëù²úÉúµÄ¸öÌå¡£

hybrid dysgenesis ÔÓÖÖ²»Óý£ºÄ³Ð©º¬ÓÐPÒò×ӵĹûÓ¬ºÍÕý³£¹ûÓ¬ÔÓ½»»áµ¼Öºó´ú²»Óý£¬È¾É«Ìå᪱äµÈȱÏÝ£¬³ÆÔÓÖÖʧ°Ü¡£

hybridization in situ  Ô­Î»·Ö×ÓÔÓ½»£ºÓÃÍ¬Î»ËØ±ê¼ÇµÄÌØ¶¨»ùÒòºÍÖÐÆÚȾɫÌåÔÓ½»À´È·¶¨´Ë»ùÒòÔÚȾɫÌåµÄλÖá£

hydrogen bond  Çâ¼ü£ºÒ»ÖÖÈõ¼ü£¬´æÔÚÓÚÒ»¸öÓëÑõ»òµªÔ­×ӵĹ²¼Û¼üÁ¬½ÓµÄÇâÔ­×ÓºÍÒ»¸ö´ø¸ºµçÔ­×ÓÖ®¼ä¡£

hydroxyapatite  ôÇ»ùÁ×»Òʯ£ºÄܺÍdsDNA ½áºÏµÄÒ»ÖÖÁ×Ëá¸Æ¡£

hypermorph  ³¬Ð§µÈλ»ùÒò£ºÒ»ÖÖÍ»±ä»ùÒò£¬Ð§Ó¦ÓëÒ°ÉúÐÍ»ùÒòÏàͬ£¬µ«±í´ïÁ¿Ô¶Ô¶¸ßÓÚÕý³£»ùÒòµÄ²úÎï¡£

hyperploid  ³¬Ì壺º¬ÓÐÉÙÁ¿¶îÍâȾɫÌåµÄ·ÇÕû̬Ìå¡£

hypersensitive sites (hypersensive regions)  ³¬Ãô¸Ðλµã£º¾ßÓÐת¼»îÐԵĻùÒòÖÜΧµÄDNAÇøÓò¶Ô Dnase I ½µ½â¸ß¶ÈÃô¸Ð¡£

hypervariable region (HVR) ¸ß±äÇø£ºÔÚÃâÒßÇòµ°°×µÄ¿É±äÇøÖеIJ¿·Öλµã£¬ËüÃǾö¶¨¿¹ÌåµÄÌØÒìÐÔ ¡£

hypomorph  ÑÇЧµÈλ»ùÒò£º±ÈÕý³£»ùÒò²úÁ¿¼õÉÙµÄÍ»±ä¡£

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identical (monozygotic) twins  Í¬ÂÑË«Éú×Ó£ºÓÉÒ»¸öÊܾ«ÂѾ­µÚÒ»´ÎÂÑÁѲúÉúÁ½¸öµ¥¶ÀµÄϸ°û£¬²¢·¢Óý³ÉÕý³£¸öÌ塣ͬÂÑË«Éú×ÓµÄÒÅ´«±³¾°ÍêÈ«Ïàͬ¡£

imaginal discs  Æ÷¹ÙÑ¿¡¢³É³æÅÌ£ºÔÚ¹ûÓ¬µÄÄÒÅßÖУ¬Ò»Ð©Î´·Ö»¯µÄϸ°û½«·¢ÓýΪ³ÉÌåµÄ×éÖ¯ºÍÆ÷¹Ù¡£

immunoglobulins (IG) ÃâÒßÇòµ°°×£ºÍ¨¹ýBϸ°û·ÖÃÚµÄÒ»ÖÖÌØÊâµÄµ°°×£¨¿¹Ì壩´æÔÚÓÚѪҺºÍÁܰÍϵͳÖУ¬ËüÃǸºÔðÌåÒºÃâÒß¡£

inbreeding  ½ü½»£ºÇ×Ôµ¹ØÏµºÜ½üµÄ¸öÌåÖ®¼ä½»Åä¡£

inbreeding coefficient  ½ü½»ÏµÊý£»Í¬Ò»¸ö׿ÏȵÄÒ»¸ö»ùÒò¿½±´ÔÚijºó´úÖеõ½´¿ºÏµÄ¸ÅÂÊ¡£

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independent assortment  ×ÔÓÉ×éºÏ£ºÃϵ¶ûµÚ¶þ¶¨ÂÉ£¬¼´²»Á¬ËøµÄ·ÇµÈλ»ùÒòÔÚÐγÉÅä×Óʱ×ÔÓÉ×éºÏ¡£

induced mutation ÓÕ·¢Í»±ä£ºÓÉÓÚÓÕ±ä¼ÁµÄ´¦Àí¶ø²úÉúµÄÍ»±ä¡£

inducer  ÓÕµ¼ÎһÖÖ»·¾³Òò×ÓÄÜ´¥·¢²Ù×Ý×ÓµÄת¼¡£

induction  ÓÕµ¼£º»ùÒò²úÎïÊÇ·ñ×÷Ϊ¶ÔÓÕµ¼ÎïµÄ·´Ó¦¡£

insertion sequence (IS)  ²åÈë˳Ðò£ºÔÚÔ­ºËÉúÎïÖеÄÒ»ÖÖ×î¼òµ¥µÄת×ùÒò×Ó£¬Ëü²åÈë»ùÒòºóʹ»ùÒòʧ»î£¬Ëü²»´øÓп¹ÐÔ»ùÒò¡£

interference  ¸ÉÉæ£ºÈ¾É«Ìå·¢ÉúµÄµÚÒ»´Î½»»»ÒÖÖÆÁËÁÚ½üµØÇøµÄµÚ¶þ´Î½»»»¡£

intergenic suppressor  »ùÒò¼äÒÖÖÆ£ºÒ»ÖÖ»ùÒòÍ»±äЧӦÒÖÖÆÁíÒ»¸ö»ùÒòÍ»±äµÄ±íÐͺó¹û£¬¶øÕâÁ½¸ö»ùÒòµÄλÖÃÊDz»Í¬µÄ¡£

internal control region (ICR) ÄÚ²¿¿ØÖÆÇø£ºRNA ¾ÛºÏøIII ʶ±ðµÄÆô¶¯×Ó˳Ðò£¬ËüλÓÚËüת¼µÄ»ùÒòµÄÄÚ²¿£¬ÈçÕæºËÉúÎïµÄ tRNA»ùÒòºÍ ssrRNA »ùÒò¡£

interrupted mating  ÖжÏÔÓ½»£ºÍ¨¹ý½Á°èÖжÏϸ¾úµÄÔÓ½»ÒÔÈ·¶¨²»Í¬Ê±¼äÄÚ¹©ÌåÖлùÒò½øÈëÊÜÌåµÄ¸ÅÂÊÀ´¶ÔȾɫÌå×÷ͼ¡£

intervening sequence (Ivs)  ¼ä²åÐòÁУº¼´ÄÚº¬×Ó£¬»ùÒòÄÚ²¿²»±àÂ룬ÔÚ³ÉÊìmRNA Öб»Çгý¡£

intrachromosomal recombination  È¾É«ÌåÄÚÖØ×飺Á½¶Ô»ùÒòÖ®¼äµÄÔÓ½»ÐγɵÄÖØ×飬¼´æ¢ÃÃȾɫÌåÖ®¼äµÄÖØ×é¡£

intron  ÄÚº¬×Ó£º¼ûintervening sequence ¡£

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inverted repeat (IR) sequence  ·´ÏòÖØ¸´ÐòÁУºË³ÐòÏàͬµ«·½ÏòÏà·´µÄ˳Ðò£¬³£´æÔÚÓÚת×ùÒò×ÓµÄÁ½¶Ë¡£

isoaccepting tRNA  Í¬¹¤tRNA£ºÐ¯´øÒ»ÖÖÌØ¶¨°±»ùËáµÄ¸÷ÖÖ tRNA·Ö×Ó¡£

isochromosome  µÈ±ÛȾɫÌ壺һÖÖ»û±ä²úÉúµÄȾɫÌ壬Á½±ÛµÄ³¤¶ÈºÍ½á¹¹ÍêÈ«Ïàͬ¡£

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karyotype  ºËÐÍ¡¢È¾É«Ìå×éÐÍ£ºÒ»¸ö¸öÌå»òϸ°û¾ßÓеĶÀÌØµÄȾɫÌåµÄÐÎ̬ºÍÊýÄ¿£¬ÈçÔÚÓÐË¿·ÖÁÑÖÐÆÚËù¼ûµÄÇé¿ö¡£

kinetochore ×ÅË¿Á££º¼û centromere¡£

Klinefelter syndrome   ¿ËÀ¼·Ñ¶ûÌØÊÏ×ÛºÏÖ¢£º¾«Ï¸¹Ü·¢Óý²»È«»òÏÈÌìØºÍè·¢Óý²»È«£¬ÈËÀàÄÐÐÔµÄÒ»ÖÖȾɫÌ岡£¬³£ÓÉÓÚĸÌåÔÚ¼õÊý·ÖÁÑʱX ȾɫÌå²»·ÖÀë¶øÐÎ³É XXY ºÏ×ÓËùÖ¡£

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ldgal  ´øÓаëÈéÌÇ»ùÒòµÄȱÏÝl ÊɾúÌ壺l ÊɾúÌå´øÓÐϸ¾úµÄgal »ùÒò¶ø±¾ÉíʧȥÁËijЩ¹¦ÄÜ¡£

lampbrush chromosome  µÆË¢È¾É«Ì壺Á½ÆÜ¶¯ÎïÂÑĸϸ°ûÖеÄÒ»ÖÖ´óÐÍȾɫÌ壬Ëü´øÓкܶàDNA ²à»·£¬ÔÚÏÔ΢¾µÏ¿ɹ۲쵽ÏóµÆË¢Ò»Ñù¡£

lawn  ¾ú̦£ºÔÚÇí֬ƽ°åµÄ±íÃæ³¤ÂúÁËÒ»²ãϸ¾ú¡£

leader sequence  Ç°µ¼ÐòÁУºmRNA 5'¶Ë²»±àÂëµÄÐòÁС£

leading strand  Ç°µ¼Á´£ºÔÚDNA ¸´ÖÆÊ±£¬ºÏ³É·½ÏòÓë¸´ÖÆ²æÒƶ¯·½ÏòÏàͬµÄÁ´¡£

leaky mutant  ÉøÂ©Í»±äÌ壺ͻ±äÌåËù±£Áô²¿·Ö¹¦ÄÜ£¬ÊµÖÊÉÏÊDzúÉúÁËÑÇЧͻ±ä»ùÒò¡£

lethal gene  ÖÂËÀ»ùÒò£ºÒ»»ùÒò±í´ïµÄ½á¹ûµ¼Ö¸öÌåËÀÍö¡£

ligand-receptor interaction  ÅäÌå-ÊÜÌåÏ໥×÷ÓãºÏ¸°ûÍâµÄ·Ö×ÓºÍϸ°û±íÃæÉϵÄÊÜÌå»ò°Ðϸ°ûÖеÄÊÜÌåÏ໥×÷Óã¬ÕâÖÖ×÷ÓõÄÒ»ÖÖÀàÐÍÊÇÔڹ̴¼Àà¼¤ËØÓëËüµÄϸ°ûÖÊÊÜÌå»òºËÄÚÊÜÌåµÄÏ໥×÷Óã¬ÁíÒ»Àà¿ÉÄÜÊÇ·ÖÃڵĶàëÄÅäÌåºÍ¿çĤÊÜÌåµÄ×÷Óá£

ligase  Á¬½Óø£ºÒ»ÖÖÄÜÁ¬½ÓºËËáÖжÏÁѵÄÁ×Ëá¶þõ¥¼üµÄø¡£

light repair  ¹âÐÞ¸´£º¼ûphoto-reactivation.

line  Æ·Ïµ¡¢Öêϵ£ºÒ»×鴿ϵ·±Ö³µÄ¶þ±¶Ìå»ò¶à±¶ÌåÉúÎºÍͬһÎïÖÖÖÐÆäËû¸öÌåµÄÇø±ðÊÇijЩµ¥Ò»±íÐÍ»ò»ùÒòÐÍ¡£

LINE(long interspersed repeated sequences)  ³¤·ÖÉ¢ÖØ¸´ÐòÁУºÈËÀàÖÐÖеÈÖØ¸´ÐòÁеķÖÉ¢¼Ò×壬³¤¼¸Ç§¸öbp£¬ÔÚ»ùÒò×éÖжàÓÚ2Íò¸ö¿½±´¡£

liner retrad  Ö±ÁÐËÄ·Öæß×Ó¡¢Ö±ÁÐËÄ·Ö×Ó£º¼õÊý·ÖÁѼõÊýºóºË·ÖÁÑÐγɵÄËÄ·ÖÌ壬Æä½ãÃòúÎïÏ໥Á¬½Ó¡£

linkage  Á¬Ëø£º²»Í¬µÄ»ùÒòλÓÚͬһȾɫÌåÉÏ¡£

linkage group  Á¬ËøÈº£ºÒ»×é²»ÄܽøÐÐ×ÔÓÉ×éºÏµÄÏßÐÔÅÅÁеĻùÒòȺ¡£

locus (loci)  »ùÒò×ù¡¢×ùλ£º»ùÒòÔÚÒÅ´«Í¼ÉϵÄλÖ㬻ùÒòÔÚȾɫÌåÉϵÄλÖá£

Lyonization  À³°º×÷Óá¢À³°º»¯£ºÔÚ²¸È鶯ÎïÖдæÔÚµÄÒ»ÖÖÐÔȾɫÌå¼ÁÁ¿²¹³¥»úÖÆ£¬¼´´ÆÌåÖÐÓÐÒ»ÌõX ȾɫÌåÄý¾Ûʧ»î£¬Ê¹´ËȾɫÌåÔÚ¸öÌå·¢ÓýÖв»ÆðÈκÎ×÷ÓᣴËÏÖÏóÓÉMary Lyon ·¢ÏÖ¶øÃüÃû¡£

lysogenic bacterium  ÈÜԴϸ¾ú£ºº¬ÓÐÒÔÔ­ÊɾúÌå״̬´æÔÚµÄκÍÊɾúÌåµÄϸ¾ú£¬´Ëϸ¾ú¶ÔÊɾúÌåÀ´ËµÊÇÈÜÔ´µÄ¡£Ö±µ½ÓÕµ¼£¬ÊɾúÌ忪ʼ·±Ö³£¬Ï¸¾ú±»Áѽ⡣

lysogenic pathway  ÈÜÔ´»¯Í¾¾¶£º¶ÔÓÚκÍÊɾúÌåÀ´ËµÆäÉú»îÖÜÆÚÓÐÁ½ÖÖ£¬Ò»ÖÖÊÇÈÜÔ´£¬Ò»ÖÖÊÇÁѽ⡣Á½ÖÖ;¾¶ÔÚ²»Í¬µÄÌõ¼þϽ»Ìæ½øÐС£ÈÜԴ;¾¶È¾É«Ìå²»ÄÜ×ÔÖ÷¸´ÖÆ£¬¶øÊÇÕûºÏÔÚËÞÖ÷ȾɫÌåµÄÌØ¶¨Î»Öã¬ÓëËÞÖ÷ȾɫÌåͬ²½¸´ÖÆ¡£

lysogeny  ÈÜÔ´ÐÔ¡¢ÈÜԴ״̬£ºÎºÍÊɾúÌåµÄȾɫÌå²åÈëËÞÖ÷ȾɫÌåÖУ¬ÊɾúÌåÒÔÔ­ÊɾúÌå״̬´æÔÚ¡£

lytic cycle  ÁѽâÖÜÆÚ£ºÊɾúÌåµÄȾɫÌå´ÓËÞÖ÷µÄȾɫÌåÉÏÇгýÏÂÀ´£¬¶ÀÁ¢¸´ÖÆ¡¢Éú³¤¡¢ºÏ³É¸÷ÖÖµ°°×£¬×îºó°ü×°³ÉºÜ¶à×ÓÊɾúÌ壬²¢Ê¹ËÞÖ÷ϸ°ûÁѽ⡣

macromolecular ´ó·Ö×Ó£º´óµÄ¶à¾ÛÎÈçDNA¡¢µ°°×ºÍ¶àÌÇ£¬ËüÃǵķÖ×ÓÁ¿ÖÁÉÙ¼¸Ç§ Da¡£

Manx  Âü¿Ë˾±íÐÍ£ºÔÓºÏÌå¼¹×µ·¢Óý²»Á¼£¬ÈçèÎÞβ°ÍµÄÐÔ×´£¬´¿ºÏÖÂËÀ£¬Îª³£È¾É«ÌåÏÔÐÔ¡£

mapping functions  ×÷ͼº¯Êý¡¢¶¨Î»º¯Êý£ºÒ»ÖÖÊýѧ¹«Ê½±íʾÁ¬ËøÍ¼ÖеľàÀëºÍÖØ×鯵ÂÊÖ®¼äµÄ¹ØÏµ¡£

map unit (mu)  Í¼¾àµ¥Î»£ºÓÃÀ´¼ÆËãÒÅ´«Í¼ÉϵÄÁ½¸ö×ùλ֮¼ä¾àÀëµÄµ¥Î»¡£Á½¸ö»ùÒòÖ®¼äµÄ½»»»ÆµÂÊΪ 1% ¾ÍÊÇÒ»¸öͼ¾àµ¥Î»¡£

maternal effect  Ä¸ÌåЧӦ£ºÄ¸Ìå×éÖ¯µÄ»·¾³¶Ôºó´ú±íÐ͵ÄÓ°Ïì¡£

maternal influence  Ä¸ÌåÓ°Ï죺ĸÌåµÄ»ùÒòÐ;ö¶¨Á˺ó´úµÄ±íÐÍ¡£

maternal inheritance  Ä¸ÌåÒÅ´«£ºÄ¸ÌåµÄ±íÏÖ¾ö¶¨ÁËËùÓкó´úµÄ±íÐÍ¡£

mating types  ½»ÅäÐÍ¡¢½ÓºÏÐÍ£ºÔڵ͵ÈÕæºËÉúÎïÈçÕæ¾úÖÐÏ൱ÓڸߵÈÉúÎïµÄÐÔ±ðϵͳ¡£²»Í¬µÄ½»ÅäÐÍÔÚÌØÊâ×ùλÉÏ (MAT) ´øÓв»Í¬µÄµÈλ»ùÒò£¬Ö»ÓÐÔÚ²»Í¬µÄ½»ÅäÐÍÖ®¼ä²ÅÄܽ»Åä»ò½ÓºÏ¡£

Maxam-Gilbert sequencing »¯Ñ§²âÐò·¨£ºÓÉAllan MaxamºÍ Walter Gilbert Ìá³ö£¬ËûÃDzÉÓò»Í¬µÄ»¯Ñ§ÊÔ¼ÁʹÒѱê¼ÇµÄDNAÖÐÌØÒìºËÜÕËáµÄÌÇÜÕ¼ü¶ÏÁÑ£¬È»ºóË®½âʹAPλµãµÄÁ×Ëá¶þõ¥¼ü¶ÏÁѾ­µçÓ¾ºÍ·ÅÉä×ÔÏÔÓ°¶Á³öDNAµÄ˳Ðò¡£

mean  Æ½¾ùÊý¡¢Æ½¾ùÖµ£ºÔÚÊýÁ¿ÒÅ´«ÖÐÓÃÀ´¼ÆËã·½²îµÄÒ»¸ö²ÎÊý£¬ÒÔ X±íʾ X = (X 1+ X 2 +¡­X n)/n

meiosis  ¼õÊý·ÖÁÑ£ºÔÚÕæºËÉúÎïÖÐÓɶþ±¶ÌåµÄºË¾­·ÖÁѲúÉúµ¥±¶ÌåÅä×ӵĹý³Ì¡£

meiosis I   µÚÒ»´Î¼õÊý·ÖÁÑ£º°üº¬Ç°ÆÚI£¬ÖÐÆÚI£¬ºóÆÚIºÍÄ©ÆÚI£¬ Ôڴ˹ý³ÌÖÐȾɫÌåÊý¼õ°ë¡£

meiosis II    µÚ¶þ´Î¼õÊý·ÖÁÑ£ºµÚÒ»´Îºó£¬Ã¿¸ö×Óϸ°ûÖÐÿÌõÒѸ´ÖƵÄȾɫÌå×ÅË¿Á£ÔÙ·Ö¿ª£¬Ê¹æ¢ÃÃȾɫµ¥Ìå±Ë´Ë·ÖÀ룬Ç÷ÏòÁ½¼«£¬×îÖÕ²úÉúËĸö×Óϸ°ûµÄ¹ý³Ì£¬ÆäʵÖÊÊÇÓÐË¿·ÖÁÑ¡£

Mendelian ratio  Ãϵ¶û±ÈÂÊ£º·ûºÏÃϵ¶û¶¨Âɵĺó´ú±íÐ͵ıÈÂÊ¡£

Mendelian population  Ãϵ¶ûȺÌ壺һ¸öÏ໥½»ÅäµÄȺÌ壬ËüÃÇÓй²Í¬µÄ»ùÒò¿â¡£Ãϵ¶ûȺÌåÊÇȺÌåÒÅ´«µÄÑо¿µ¥Î»¡£

merogenete  ²¿·Ö¶þ±¶Ì壺¾ßÓÐÈ«²¿µÄÄÚ»ùÒò×ӺͲ¿·ÖÍâ»ùÒò×ÓµÄϸ¾úϸ°û£¬Ò²³Æ²¿·ÖºÏ×Ó¡£

merozygote   ²¿·ÖºÏ×Ó£ºÍ¬²¿·Ö¶þ±¶Ìå¡£

messenage RNA (mRNA)  ÐÅʹRNA£ºº¬ÓбàÂëÐÅÏ¢µÄmRNA£¬Êǵ°°×·­ÒëµÄÄ£°å¡£

metacentric chromosome  ÖÐ×ÅË¿Á£È¾É«Ì壺×ÅË¿Á£Î»ÓÚȾɫÌåµÄÖв¿£¬Á½±Û³¤¶ÈÏà½ü¡£

metameres  Ìå½Ú£ºÔڽϸߵȵ͝ÎÈç¹ûÓ¬£©ÉíÌåÉϿɷֵÄÖØ¸´µ¥Î»¡£

metephase  ÖÐÆÚ£ºÔÚÓÐË¿·ÖÁÑ»ò¼õÊý·ÖÁÑÖÐȾɫÌåÅÅÔÚ³àµÀ°åÉϵĽ׶Ρ£

methlation  ¼×»ù»¯£º·Ö×Ó¼ÓÉϼ׻ù¶ø±»ÐÞÊεĹý³Ì¡£

migration  Ç¨ÒÆ£ºÉúÎï´ÓÒ»´¦µ½ÁíÒ»´¦¡£

minimal medium  »ù±¾ÅàÑø»ù£ºÖ»º¬ÓÐÒ°ÉúÐÍÉú³¤·±Ö³ËùÐè³É·ÖµÄÅàÑø»ù¡£

missense mutation  ´íÒåÍ»±ä£ºÒ»ÖÖÍ»±äʹij¸öÃÜÂë×Ӹıä³É±àÂëÁíÒ»ÖÖ°±»ùËáµÄÃÜÂë×Ó¡£

mitochondrial cytopathies  ÏßÁ£Ìåϸ°û²¡£ºÓÉÓÚÏßÁ£ÌåDNA·¢ÉúµãÍ»±ä»òȱʧÒýÆðµÄÈËÀàĸÌåÒÅ´«¼²²¡¡£

mitochondrion   ÏßÁ£Ìå£ºÕæºËÉúÎïϸ°ûÆ÷£¬ÊÇATPºÏ³É¼°ÄûÃÊËáÑ­»·½øÐеij¡Ëù¡£

mitosis  ÓÐË¿·ÖÁÑ£ºÔÚÌåϸ°ûÖнøÐеĺ˷ÖÁÑ£¬²úÉúµÄ×Óϸ°ûºÍÇ×´úϸ°ûÍêÈ«Ïàͬ¡£

mitotic crossover  ÓÐË¿·ÖÁѽ»»»£ºÔÚ¶þ±¶ÌåµÄÓÐË¿·ÖÁÑÖУ¬Í¬Ô´È¾É«ÌåÅä¶Ô²úÉúÖØ×é¡£

mobile genetic element  ¿ÉÒÆ¶¯µÄÒÅ´«Òò×Ó£º¼ûת×ùÒò×Ó¡£

moderately repetitive sequence  ÖеÈÖØ¸´Ë³Ðò£ºÔÚ»ùÒò×éÖоßÓÐ103¡«105¿½±´µÄÖØ¸´Ë³Ðòmolecular cloning  ·Ö×Ó¿Ë¡£º¼û¿Ë¡£¨cloning£©¡£

molecular genetics  ·Ö×ÓÒÅ´«Ñ§£ºÒÔ·Ö×ÓˮƽÑо¿»ùÒòµÄ½á¹¹ºÍ¹¦ÄÜ¡£

monocistronic mRNA  µ¥Ë³·´×ÓmRNA£ºÕæºËÉúÎïµÄmRNA£¬Ò»¸ömRNAÖ»±àÂëÒ»¸öµ°°×¡£

monohybrid cross  µ¥»ùÒòÔÓÖÖÔÓ½»£ºÇ×±¾Îªµ¥¸ö×ùλÔÓºÏ×ÓµÄÔÓ½»£¬¼´Aa´Aa¡£

monoploid  Ò»±¶Ì壺ֻÓÐÒ»Ì×ȾɫÌåµÄϸ°û»ò¸öÌå¡£

monosome  µ¥Ì壺¶þ±¶Ìå¸öÌå»òϸ°û¶ªÊ§Ä³ÌõȾɫÌå¡£

mosaic  Ç¶ºÏÌ壺һ¸ö¸öÌ岻ͬ×éÖ¯ÖкËÐͲ»Í¬£¬³£ÓÉȾɫÌåµÄ²»·ÖÁÑ»ò¶ªÊ§Ôì³É¡£

mt DNA  ÏßÁ£ÌåDNA£ºÏßÁ£ÌåÖÐÒ»ÖÖ»·×´DNA¡£

mu phage mu ÊɾúÌ壺һÖÖ»·×´DNA ÊɾúÌ壬¿É²åÈëËÞÖ÷µÄ¶à¸öλµã£¬²¢ÒýÆðת×ù¡¢Ê§»îºÍȾɫÌåÖØÅÅ¡£

multigene family  ¶à»ùÒò¼Ò×壺ÔÚ½ø»¯¹ý³ÌÖУ¬ÓÉÒ»¸ö׿ÏÈ»ùÒò×éÏà¹ØµÄ»ùÒò¡£

multiple alleles ¶àµÈλ»ùÒò£ºÒ»¸ö»ùÒòÍ»±äΪ2ÖÖÒÔÉϲ»Í¬µÄµÈλ»ùÒòÐÎʽ¡£

multiple-factor hypothesis  ¶àÒò×Óѧ˵£ºÒ»ÖÖ½âÊÍÊýÁ¿±äÒìµÄѧ˵£¬ÈÏΪÊýÁ¿±äÒìÊÇÓÉÓÚ´óÁ¿»ùÒòÏ໥×÷Ó㬶øÃ¿¸ö»ùÒò´øÓкÜСµÄÏà¼ÓЧӦ¡£

mutagen  ÓÕ±ä¼Á£ºÒ»ÖÖÄÜÔö¼ÓÍ»±äÂʵÄÊÔ¼Á¡£

mutant  Í»±äÌ壺·¢ÉúÍ»±äµÄϸ°û»ò¸öÌå¡£

mutant allele  Í»±äµÈλ»ùÒò£ºÈκκÍÒ°ÉúÐÍ»ùÒò²»Í¬µÄ»ùÒò¡£

mutation  Í»±ä£º³ýÖØ×éÍâÈκÎʹÒÅ´«ÎïÖÊ·¢Éú¸Ä±äµÄ¹ý³Ì¡£

mutation frequency  Í»±äƵÂÊ£ºÈºÌåÖÐÍ»±äµÄƵÂÊ¡£

mutation rate  Í»±äÂÊ£ºÔÚÿ¸öµ¥Î»Ê±¼ä£¨Èçÿ¸öÊÀ´ú£©Ï¸°û·¢ÉúÍ»±äµÄÊý¡£

muton  Í»±ä×Ó£º×îСµÄÍ»±äµ¥Î»£¬ÏÖÒÑ֪Ϊһ¶Ô¼î»ù¡£

narrow heritability  ÏÁÒåÒÅ´«Á¦£º¼ÓÐÔ·½²îÕ¼±íÐÍ·½²îµÄ±ÈÀý¡£

natural selection  ×ÔȻѡÔñ£º»ùÒòÐ͵IJ»Í¬·±Ö³¡£

negative assortative mating  Ñ¡Òì½»Å䣺±íÐͲ»Í¬µÄÇ×±¾ÓÅÏȽ»Åä¡£

negative control  ¸ºµ÷¿Ø£ºÓÉÖÕÖ¹»ò¹Ø±Õת¼µÄÒò×ӽ鵼µÄµ÷¿Ø¡£

neomorph  ÐÂЧµÈλ»ùÒò£º¾­Í»±ä»ùÒò²úÉúеÄÑÇ»ù»ò½á¹¹¡£

neurofibromatosis Éñ¾­ÏËά²¡£ºÈËÀàÆ¤·ôÉÏÒ»ÖÖÉñ¾­Ï¸°ûÖ×ÁöºÍdzºÖÉ«°ß£¬ÊÇÉúֳϸ°ûÖеÈλ»ùÒòÍ»±ä¶ø²úÉúµÄ£¬ÊÇÒ»ÖÖ³£È¾É«ÌåÏÔÐÔÒÅ´«¡£

neutral mutation  ÖÐÐÔÍ»±ä£º»ùÒòÐòÁÐÖÐÃÜÂë×ӵĸı䲢ûÓиıä²úÎïµÄ¹¦ÄÜ£¬¼´²»Ó°ÏìÉúÎïÊÊÓ¦ÐÔµÄÍ»±äºÍ²»Ó°ÏìÉúÎï±íÐÍЧӦµÄÍ»±ä¡£

neutral mutation hypothesis  ÖÐÐÔÍ»±äѧ˵£ºÓÉÈÕ±¾µÄľ´å×ÊÉúÌá³öµÄÒ»ÖÖ½âÊͶà̬ƽºâµÄѧ˵£¬ÒÔÈ¡´ú¾­µäÄ£ÐÍ£¬ÈÏΪµ°°×´æÔڹ㷺µÄÒÅ´«±äÒ죬µ«±äÒìµÄÌØµã¶ÔÓÚ×ÔȻѡÔñ¶øÑÔÊÇÖÐÐԵġ£

nick translation  È±¿ÌÆ½ÒÆ£ºÓÃDNA¾ÛºÏøIÖÆ±¸·ÅÉäÐÔ±ê¼ÇDNAË«Á´µÄ¹ý³Ì£¬ÊÇÖÆ±¸·ÅÉäÐÔ̽ÕëµÄÒ»ÖÖ·½·¨¡£

noncontributing alleles  ·Ç¹±Ï×µÈλ»ùÒò£º¶ÔÊýÁ¿ÐÔ×´²»ÆðÈκÎ×÷ÓõĵÈλ»ùÒò¡£

nondisjuction  ²»·ÖÀ룺ͬԴȾɫÌå»òæ¢ÃÃȾɫµ¥ÌåÔÚºóÆÚ²»·ÖÀë¡£

nonlinear tetrad  ·ÇÏßÐÔËÄ·Ö×Ó£º¼õÊý·ÖÁѲúÉúµÄËÄ·Ö×ÓÌØÊâ˳ÐòÅÅÁС£

non-Mondelian inheritance  ·ÇÃϵ¶ûÒÅ´«£ººËÍâȾɫÌåµÄÒÅ´«£¬ÆäÒÅ´«·½Ê½²»Í¬ÓÚºËÒÅ´«¡£

nonparental-ditype (NPD)  ·ÇÇ×¶þÐÍ£ºº¬ÓÐÁ½ÖÖ»ùÒòÐ͵ÄËÄ·ÖÌ壬¶øÕâÁ½ÖÖ»ùÒòÐÍÈ´ÊÇÖØ×éÐÍ¡£

nnsense codon  ÎÞÒåÃÜÂë×Ó£ºÁ´µÄÖÕÖ¹ÃÜÂë¡£

nonsense mutation  ÎÞÒåÍ»±ä£º»ùÒò·¢ÉúÍ»±ä£¬Ê¹±àÂëÇøÖеÄij¸öÃÜÂë×Ó±äΪÎÞÒåÃÜÂë×Ó¡£

nontranscribed spacer (NTS) sequence  ·Çת¼¼ä¸ôÇøÐòÁУºÔÚrDNAÖÐת¼µ¥Î»Ö®¼äµÄ·Çת¼ÐòÁУ¬NTSÖеÄ˳Ðò¶ÔrDNA ת¼µÄ¿ØÖÆÊǺÜÖØÒªµÄ¡£

Northern blot analysis Northern ÔÓ½»£ººÍSouthern blotting ¼´Ïµ¼¼ÊõÏàËÆµÄ¼¼Êõ£¬²»Í¬µÄÊÇÓÃÀ´·ÖÎöRNA¶ø²»ÊÇDNA ¡£½«µçÓ¾µÄRNA ×ªÒÆµ½Ä¤ÉÏ£¬¹©Ì½ÕëÔÓ½»¡£

nu body Å¥Ì壺¼ûºËСÌå (nucleosome)¡£

nuclease  ºËËáø£ºÒ»ÖÖͨ¹ýÇжÏÁ×Ëá¶þõ¥¼ü¶ø½µ½âDNAµÄø¡£

nucleofilament  ºËË¿£ºÖ±¾¶Îª30 nm µÄȾɫÖÊË¿£¬ÓÉDNA ÈÆÔÚºËСÌåºËÐĵÄÖÜΧ¶øÐγɡ£

nucleoid ÀàºË£ºÏ¸¾úϸ°ûÖÊÖÐµÄ DNAÍÅ£¬ÓÉÖ§¼Üµ°°×ºÍËÄÖܵÄ100¸öDNA»·¹¹³É

nucleoplasm ºËÖÊ¡¢ºË½¬£ºÏ¸°ûºËÖаë¹ÌÌå»ùÖÊ¡£

nucleolar organizer ºËÈÊ×éÖ¯Õß¡¢ºËÈÊÐγÉÇø£ºÈ¾É«ÌåÉϵÄÒ»¸öÇøÓò£¬ºÍºËÈÊÏàÁ¬£¬º¬ rRNA»ùÒò¡£

nucleolus   ºËÈÊ£ºÔÚºËÖеÄϸ°ûÆ÷£¬º¬rRNA¼°ÒÑÀ©ÔöµÄ¶à¿½±´ rRNA»ùÒò¡£

nucleside   ºËÜÕ£ºDNAÖеijɷ֣¬ÓÉÎìÌǺͼî»ù¹¹³É¡£

nucleosome  ºËСÌå£ºÕæºËÉúÎïȾɫÌåµÄ»ù±¾½á¹¹µ¥Î»£¬Óɰ˾ÛÌå×éµ°°×ºÍÅÌÈÆÔÚ×éµ°°×ÉϵÄDNA£¨¹²200bp£©¼°Á¬½ÓDNA¹¹³É¡£

nucleosome core particle  ºËСÌåºËÐÄ¿ÅÁ££º146 bp DNAƬ¶ÎÓë°Ë¾ÛÌå×éµ°°×(2´H2A-H2B+H32-H42)½áºÏµÄ¸´ºÏÌå¡£

null allele  ÎÞЧµÈλ»ùÒò£ºÒ»¸öµÈλ»ùÒò²»ÄܺϳɲúÎï»ò²úÎïÎÞ¹¦ÄÜ¡£

nullisomy  È±Ìå¡¢ÁãÌ壺һÖÖ·ÇÕû±¶ÌåµÄ»û±ä£¬¸öÌåȱʧÁËijÌõͬԴȾɫÌå¡£

ocher codon  ô÷ʯÃÜÂë×Ó£ºÎÞÒåÃÜÂë×ÓUAA¡£

Okazaki fragment  ¸ÔÆéƬ¶Î£ºÔÚDNA²»Á¬Ðø¸´ÖÆÖУ¬ºóËæÁ´ÉÏÏȺϳɵÄss DNAƬ¶Ï£¬È»ºóÓÉÕâЩƬ¶ÏÁ¬½Ó³ÉÁ¬ÐøDNAÁ´¡£

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release factor  ÊÍ·ÅÒò×Ó£ºµ°°×ºÏ³Éʱ£¬µ±ºËÌÇÌåÒÆ¶¯µ½ÖÕÖ¹ÃÜÂë×Óʱ£¬Ã»ÓÐÏàÓ¦µÄ°±õ£tRNA ½øÈëA룬¶øÒ»ÖÖµ°°×Òò×ӿɽøÈ룬´Ùʹ¶àëĵÄÊͷźͺËÌÇÌåµÄ½âÀ룬´Ëµ°°×³ÆÊÍ·ÅÒò×Ó¡£

replica plating  Ó°Ó¡ÅàÑø£º½«Ò»¸öƽ°åÉϵľúÂä°´Ô­À´µÄ·Ö²¼×ªÒƵ½Áíһƽ°åÉϵķ½·¨£¬¼´½«Ë¿ÈÞ°üÔÚÓëÆ½°åÆ¥ÅäµÄÔ²ÖùÌåÉÏ£¬Ãð¾úºóÔÚÓоúÂäµÄƽ°åÉÏÓ¡Ò»ÏÂÔÙתӡµ½Áíһƽ°åÉÏ£¬Ë¿ÈÞÉÏÎÞÊýµÄÏËάÆðµ½½ÓÖÖÕëµÄ×÷Óá£

replication bubble  ¸´ÖÆÅÝ£»ÔÚ¸´ÖÆÖÐÏà¶ÔµÄÁ½¸ö¸´ÖƲæÖ®¼äµÄÒѱäÐÔµÄDNAÇøÓò¡£

replication fork   ¸´ÖƲ棺¸´ÖÆÊ±DNAË«Á´½â¿ªÐγɵÄYÐνṹ¡£

replication machine (replisome) ¸´ÖÆ»úÖÆ£¨¸´ÖÆÌ壩£ºÔÚ DNA¸´ÖÆÖÐÓÉÁ½¸ö·Ö×ÓµÄDNA polIIIºÍ½âÐýø¡¢Òý·¢Ìå½áºÏÐγɵĸ´ÖÆÌå¡£

replicon  ¸´ÖÆ×Ó£ºÒ»¸ö¸´ÖƵ¥Î»£¬°üÀ¨ÕæºËµÄ¸´ÖÆÆðµãºÍλÓÚÁ½²àµÄ¸´ÖÆÖÕµãÖ®¼äµÄÇøÓò¡£

reporter gene ±¨¸æ»ùÒò£ºÒ»ÖÖ±íÐͱí´ïÒ×ÓڲⶨµÄ»ùÒò£¬ÓÃÓÚÑо¿ÖØ×éDNA ÖÐÆô¶¯×ÓÔÚ²»Í¬µÄʱ¼ä¡¢²»Í¬·¢Óý½×¶ÎµÄ»îÐÔ¡£  

repressor protein  ×è¶ôµ°°×£ºÒ»ÖֿɽáºÏÔÚ²Ù×Ý»ùÒòÉϲ¢×èֹת¼µÄ·Ö×Ó¡£

repulsion   »¥³â£ºÁ½¸öÁ¬ËøµÄÔӺϻùÒò¶Ô£¬ÅÅÁз½Ê½ÎªAb/aB¡£

restriction enzyme   ÏÞÖÆÐÔø£ºÄÜÔÚÌØÒìλµãÇпªË«Á´DNAµÄÒ»ÖÖø£¬Ëü¶ÔÓÚ·ÖÎö DNAºÍ¹¹½¨ DNAÖØ×é·Ö×Ó¶¼ÊǺÜÖØÒªµÄ¡£

restriction condition  ÏÞÖÆÌõ¼þ£ºÒ»ÖÖ»·¾³Ìõ¼þ£¬ÔÚ´ËÌõ¼þÏÂÍ»±ä»á²úÉúÍ»±ä±íÐÍ¡£

restriction fragment length polymorphisms (RFLP)  ÏÞÖÆÐÔÆ¬¶Ï³¤¶ÈµÄ¶à̬ÐÔ£ºÔÚȺÌåÖв»Í¬¸öÌå»ùÒòµÄ²àÒí˳Ðò²»Í¬£¬µ«¿ÉÎȶ¨ÒÅ´«¡£ÈôÓÃÏÞÖÆÐÔøÀ´Çпɵõ½ºÜ¶à²»Í¬³¤¶ÈµÄøÇÐÆ¬¶Ï£¬ËüÃÇ¿É×÷ΪһÖÖ±ê¼Ç¡£

restriction map   ÏÞÖÆÐÔøÇÐͼ£ºÒ²³ÆÎïÀíͼÆ×£¬ÏÔʾ³ö»ùÒò×éÖеÄDNAÉϲ»Í¬Ã¸ÇÐλµãµÄÏ໥¹ØÏµ¡£

retroposon  ·´×ªÂ¼×Ó¡¢·´×ªÂ¼×ª×ù×Ó£ºÓÉÒ»¸öRNA ·Ö×Ó¾­·´×ªÂ¼²úÉúµÄת×ùÒò×Ó¡£

retroviruses  ·´×ªÂ¼²¡¶¾£ºµ¥Á´RNA²¡¶¾¡£ÏȾ­·´×ªÂ¼³Éds-RNAµÄÖмäÌ壬²åÈëµ½ËÞÖ÷µÄȾɫÌåÖÐÔÙ½øÐÐת¼¡£

reverse genetic   ·´ÏòÒÅ´«Ñ§£ºÎªÑо¿Ò»¸ö»ùÒò»òµ°°×µÄÕý³£¹¦ÄÜ£¬¿É½«ËüÃǵÄÍ»±äÐÎʽÒýÈëϸ°û£¬¹Û²ìÆä±í´ï£¬´Ë·½·¨³Æ·´ÏòÒÅ´«Ñ§¡£

reverse mutation (reversion)  »Ø¸´Í»±ä£¨»Ø±ä£©£ºÒ»ÖÖÍ»±äʹͻ±ä»ùÒò±ä³ÉÁËÒ°ÉúÐÍ»ùÒò¡£

reverse transcriptase  ·´×ªÂ¼Ã¸£ºÒ»ÖÖÒÔRNAΪģ°åºÏ³ÉDNAµÄ¾ÛºÏø¡£

ribonucleases (RNase)  ºËËáø£º´ß»¯RNA½µ½âµÄø¡£

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ribonucleic acid (RNA) ºËÌǺËË᣺ÊǶà¾ÛºËÌǺËËá·Ö×Ó£¬µ¥Á´£¬ÎìÌÇΪºËÌÇ£¬ËÄÖÖ¼î»ùÓëDNA²»Í¬µÄÊǺ¬ÓÐU¶øÎÞT¡£

ribosomal DNA (rDNA)  ºËÌÇÌåDNA£º±àÂërRNAµÄDNAÇøÓò¡£

ribosomal protein   ºËÌÇÌåµ°°×£ºÓërRNA½áºÏÐγɺËÌÇÌåµÄµ°°×¡£

rRNA    ºËÌÇÌåRNA £ºÒ»ÖÖRNA·Ö×Ó£¬ÓɺËÈÊÐγÉÇø±àÂ룬¶ÔºËÌÇÌåµÄ½á¹¹ºÍ¹¦Äܶ¼ÓÐÒ»¶¨µÄ×÷Óá£

ribosome   ºËÌÇÌ壺ÓÉrRNAºÍºËÌÇÌåµ°°×¹¹³ÉµÄ¸´ÔÓµÄϸ°ûÆ÷¿ÅÁ££¬Êǵ°°×ºÏ³ÉµÄ³¡Ëù¡£

ribosome-binding site  ºËÌÇÌå½áºÏλµã£ºmRNA·Ö×ÓÉϵÄÒ»¶ÎÐòÁУ¬ÔÚ´Ë´¦ºËÌÇÌ嶨ÏòÕýÈ·ÔĶÁ¶Á¿ò²¢Æðʼµ°°×ºÏ³É¡£

ribozyme (RNA enzyme)  ºËø¡¢ºËÌǺËËáÄâø£º¾ßÓÐ×ÔÎÒ¼ô½Ó¹¦ÄܵÄRNA·Ö×Ó¡£

R looping (R loops)  R »·£ºÓÉM Thomas £¬R White ºÍR Davis ·¢Õ¹µÄ¼¼Êõ£¬µ±Ë«Á´DNAÔÚ±äÐÔζÈÏ·õ»¯£¬²¿·ÖÇøÓòË«Á´´ò¿ª£¬¶øµ¥Á´»¥²¹µÄRNA·Ö×ÓÄܺÍÏàÓ¦µÄDNAµ¥Á´½áºÏ£¬±»È¡´úµÄDNAµ¥Á´ÐγÉR»·¡£

RNA editing  RNA±à¼­£» RNA µÄÒ»ÖÖ¼Ó¹¤£¬ÒÔÒýµ¼RNAΪģ°å£¬ÔÚ RNAÉÏÔö¼Ó»ò¼õÉÙ¼¸¸ö¼î»ùµÄ¹ý³Ì¡£

RNA ligase  RNAÁ¬½Óø£ºÄÚº¬×Ó´ÓǰÌåRNAÇгýºó£¬´ß»¯ÍâÏÔ×Ó²¿·Ö±Ë´ËÁ¬½ÓµÄø¡£

RNA polymerase  RNA ¾ÛºÏø£º´ß»¯RNAºÏ³ÉµÄ¾ÛºÏø£¬ËüºÍDNA¾ÛºÏø²»Í¬£¬¿É´ÓÍ·Æðʼ£¬ÎÞÐè3'ÒýÎï¡£

RNA plymerase I  RNA¾ÛºÏøI £º´æÔÚÓÚÕæºËϸ°ûµÄºËÈÊÖУ¬´ß»¯18S £¬5.8S ºÍ28S r RNA»ùÒòת¼¡£

RNA plymerase II  RNA¾ÛºÏøII £º½ö´æÔÚÓÚÕæºËϸ°ûµÄºËÖÊÖУ¬´ß»¯mRNA±àÂë»ùÒòµÄת¼¡£

RNA plymerase III  RNA¾ÛºÏøIII £º½ö´æÔÚÓÚÕæºËϸ°ûµÄºËÖÊÖУ¬´ß»¯tRNA ºÍ5S rRNA»ùÒòת¼¡£

Robertsonian translocation  ÂÞ²®Ñ·Ò×λ£ºÒ»Öַǽ»»¥Ò×룬Á½¸ö·ÇͬԴµÄ½ü¶Ë×ÅË¿Á£È¾É«ÌåµÄ³¤±ÛÁ¬½Ó³ÉÒ»Ìõµ¥×ÅË¿Á£µÄÖÐÑë×ÅË¿Á£È¾É«Ì壬ÓÖ³ÆÕû±ÛÒ×λ¡£

sample  Ñù±¾£ºÌṩȺÌåÐÅÏ¢µÄÑǵ¥Î»£¬Ñù±¾ÒªÇó´óСºÏÊÊ£¬²¢Ëæ»úÈ¡Ñù²Å¾ßÓдú±íÐÔ¡£

sampling error  Ñù±¾Îó²î£ºÔÚÒ»¸öСÑù±¾ÖÐÔ¤ÆÚµÄ±ÈÀý»á·¢ÉúËæ»ú¸Ä±äµÄÏÖÏó¡£

satellite DNA  ÎÀÐÇDNA£ºÕæºËÉúÎï»ùÒò×éÖеÄÒ»Öָ߶ÈÖØ¸´Ë³Ðò£¬¸»º¬A-T £¬µ±½øÐÐCsClÃܶÈÌݶÈÀëÐÄʱ£¬»ùÒò×é³ÊÏÖÒ»Ìõ¿íµÄ´ø£¬¶øÔÚÆäÉÏ·½¸ß¶ÈÖØ¸´Ë³ÐòÏÔʾÁ˵¥¶ÀµÄÒ»Ìõϸ´ø£¬¹Ê³ÆÎÀÐÇDNA¡£

scaffold attachmentation region (SARs)  £º¹Ç¼Ü¸½×ÅÇø£ºDNAÉϵÄÌØÒìλÖ㬸½×ÅÔÚȾɫÌåµÄ¹Ç¼ÜÉÏ¡£

secondary law  µÚ¶þ¶¨ÂÉ£º¼û×ÔÓÉ×éºÏ¶¨ÂÉ(independent assortment)¡£

secondary nondisjunction  ´Î¼«²»·ÖÀ룺³õ¼«²»·ÖÀë²úÉúµÄ´ÆÐÔºó´úÖÐXȾɫÌåÔٶȲ»·ÖÀë¡£

second-site mutation  µÚ¶þλµãÍ»±ä£º¼ûÒÖÖÆ»ùÒòÍ»±ä(suppressor mutation)¡£

selection coefficient  Ñ¡ÔñϵÊý£º¼ÆËã¶ÔÒ»ÖÖ»ùÒòÐ͵ÄÑ¡ÔñÏà¶ÔÇ¿¶È¡£

selection differential  Ñ¡Ôñ²îÊý£ºÔÚ×ÔÈ»ºÍÈ˹¤Ñ¡ÔñÖУ¬±»Ñ¡ÔñÇ×´úµÄ±íÐÍÆ½¾ùÖµºÍδ±»Ñ¡ÔñµÄȺÌ寽¾ù±íÐÍÖ®¼äµÄ²îÒì¡£

self-assembly  ×Ô×é×°¡¢×Ô¶¯×°Å䣺ÓÉÑÇ»ù°´Ìض¨µÄģʽ×Ô¶¯¾Û¼¯³ÉijÖÖ¹¦ÄܽṹµÄ¹ý³Ì¡£

self-fertilization (selfing) ×ÔÌåÊܾ«£ºÍ¬Ò»¸öÌå²úÉúµÄ´ÆÐÔºÍÐÛÐÔÅä×ÓÏ໥½áºÏ¡£

self-splicing  ×ÔÎÒ¼ô½Ó£ºÄ³Ð©Ç°ÌåRNA·Ö×ÓÄÚº¬×ÓµÄÇгý£¬´Ë¹ý³ÌÔÚÓеÄÉúÎïÖÐÊǵ°°×ÒÀÀµÐÔ·´Ó¦¡£

semiconservative replication mode  °ë±£Áô¸´ÖÆÄ£ÐÍ£ºÔÚDNA¸´ÖÆÁ½Ìõ×ÓDNAÁ´ÖУ¬Ã¿ÌõË«Á´¶¼º¬ÓÐÒ»ÌõÇ×´úµÄµ¥Á´¡£

semidiscontinuous  °ë²»Á¬Ðø£¨¸´ÖÆ£©£ºDNA ¸´ÖÆÊ±Ç°µ¼Á´ÉÏDNAµÄºÏ³ÉÊÇÁ¬ÐøµÄ£¬ºóËæÁ´ÉÏÊDz»Á¬ÐøµÄ£¬¹Ê³Æ°ë²»Á¬Ðø¸´ÖÆ¡£

sense codon ÓÐÒåÃÜÂë×Ó£ºmRNAÉÏÏà¶ÔÒ»¸ö°±»ùËáµÄÃÜÂë×Ó¡£

sex chromosome  ÐÔȾɫÌ壺ÔÚÕæºËÉúÎïÖкÍÐÔ±ðÏà¹ØµÄȾɫÌ壬ÈçX, YºÍ Z,W¡£ÕâЩȾɫÌåÔÚÐÔ±ð¾ö¶¨ÖÐÆðÖØÒª×÷Óá£

sex determination  ÐÔ±ð¾ö¶¨£ºÍ¨¹ýÒÅ´«»ò»·¾³µÄ×÷ÓÃʹ¸öÌ彨Á¢ÐÔ±ðµÄ¹ý³Ì£¬ÆäʵÖÊÊÇÐÔÏٵķֻ¯µÄ¾ö¶¨¡£

sex-influenced traits ´ÓÐÔÐÔ×´£ºÒ»ÖÖÐÔÏà¹ØÒÅ´«£¬»ùÒòλÓÚ³£È¾É«ÌåÉÏ£¬µ«»ùÒòµÄ±í´ïºÍÐÔ¼¤ËØÓйأ¬Òò´ËÔÚ²»Í¬ÐÔ±ðÖлùÒòÐÍÏàͬ£¬µ«±íÐͲ»Í¬¡£

sex-limited trait  ÏÞÐÔÐÔ×´£ºÒ»ÖÖÐÔÏà¹ØÒÅ´«£¬»ùÒòλÓÚ³£È¾É«Ìå»òÐÔȾɫÌåÉÏ£¬µ«ÐÔ×´½öÔÚÒ»ÖÖÐÔ±ðÖбí´ï£¬ÕâЩÐÔ×´³£ºÍµÚ¶þÐÔÕ÷Óйء£

sex-linked  ÐÔÁ¬Ëø£º»ùÒòλÓÚXºÍYȾɫÌå·ÇÍ¬Ô´ÇøµÄÒÅ´«¡£

sex reversed  ÐÔ·´×ª£ºÔÚ²¸È鶯ÎïÖеÄÒ»ÖÖ×ÛºÏÖ¢£¬XX µÄ¸öÌå·¢ÓýΪÐÛÐÔ»òXYµÄ¸öÌå·¢ÓýΪ´ÆÐÔ£¬´ËÓëSRYÇøÓòµÄÍ»±äÓйأ¬¿ÉÄÜºÍÆäËü»ùÒòÒ²Óйء£

sexduction  ÐÔµ¼£ºÓÉÓÚF'Òò×Óͨ¹ý½ÓºÏ½«Ìض¨µÄÒò×ÓÒÔºÜ¸ßµÄÆµÂÊ´«µÝ¸øF- ÊÜÌåµÄ¹ý³Ì¡£

sexual reproduction ÓÐÐÔ·±Ö³£ºÉæ¼°µ½ÓɼõÊý·ÖÁѲúÉúµÄÁ½ÖÖÅä×ÓÈںϵķ±Ö³¡£

shotgun technique  Äñǹ·¨£º½«»ùÒò×éDNAÇгɺܶàСµÄƬ¶Ï×°µ½ÔØÌåÉÏÔÙת»¯ËÞÖ÷ϸ°û½øÐпË¡£¬È»ºóÓÃÌØÒì̽Õëͨ¹ý·Ö×ÓÔÓ½»µö³öÏàÓ¦µÄ»ùÒò¹©Ñо¿¡£

shuttle vector   ´©ËóÔØÌ壺һÖÖ¿ËÂ¡ÔØÌ壬¿ÉÔÚÁ½ÖÖ»ò¶àÖÖËÞÖ÷ÖпË¡£¬³£ÓÂÓÚÖØ×éDNAÔÚ E.coliÖпË¡ÔÙµ½ÁíÒ»ÖÖÉúÎïÖУ¨Èç½Íĸ£©±í´ï¡£

sickle-cell anemia  Á­µ¶ÐÎϸ°ûƶѪ£ºÒ»ÖÖDZÔÚµÄÈËÀàÖÂËÀÒÅ´«²¡£¬ÊÇÓÉÓÚb-Öéµ°°×µÄ»ùÒòÍ»±äʹÔÚȱÑõʱºìϸ°û±äΪÁ­µ¶ÐΣ¬Îª³£È¾É«ÌåÒþÐÔÒÅ´«¡£

signal hypothesis  ÐźÅѧ˵£ºÓйص°°×ͨ¹ýÌØÊâµÄÊèË®°±»ùËáÇøÓòԽĤ·ÖÃÚµÄѧ˵£¬´ËÊèË®°±»ùËáÇøÓòÔÚERÖб»ÇгýºÍ½µ½â¡£

signal peptidase  ÐźÅëÄø£ºÔÚERÖÐÇгýºÍ½µ½âÐźÅëĵÄÒ»ÖÖø¡£

signal recognition particle (SRP)  ÐźÅʶ±ð¿ÅÁ££ºÔÚÕæºËÉúÎïϸ°ûÖÊÖÐÒ»ÖÖС·Ö×ÓRNAºÍÁùÖÖµ°°×µÄ¸´ºÏÌ壬´Ë¸´ºÏÌåÄÜʶ±ðºËÌÇÌåÉÏÐÂÉúëÄÄ©¶ËµÄÐźÅ˳Ðò²¢ÓëÖ®½áºÏ£¬Ê¹ëĺϳÉÍ£Ö¹£¬Í¬Ê±ËüÓֿɺÍERĤÉϵÄÍ£²´µ°°×ʶ±ðºÍ½áºÏ£¬´Ó¶ø½«mRNAÉϵĺËÌÇÌå´øµ½Ä¤ÉÏ¡£

signal sequence  ÐźÅ˳Ðò¡¢ÐźÅëÄ£º·ÖÃÚµ°°×µÄÄ©¶Ë´æÔÚµÄÊèË®°±»ùËáÇøÓò£¬ÌṩԽĤÐźţ¬µ±½øÈëERÖб»ÇгýºÍ½µ½â¡£

silencer    ³ÁĬ×Ó¡¢³ÁĬ»ùÒò£º¼û³ÁĬԪ¼þ(silencer element)¡£Ò»ÖÖת¼µ÷¿ØÔª¼þ£¬ÌصãºÜÏóÔöÇ¿×Ó£¬µ«²»Ôöǿת¼£¬¶øÊǼõÈõת¼£¬¹Ê³Æ¸ºÔöÇ¿×Ó¡£

silent mutation  ³ÁĬͻ±ä£º¼´Í¬ÒåÍ»±ä£¬Í»±äËäÈ»Ìæ»»Á˼î»ù£¬µ«°±»ùËá˳Ðòδ±ä£¬±£³ÖÒ°ÉúÐ͵ŦÄÜ¡£

simple telomeric sequences ¼òµ¥µÄ¶ËÁ£Ë³Ðò£ºÔÚÕæºËÉúÎïȾɫÌåDNAµÄÄ©¶Ë´æÔÚ¼òµ¥µÄ´®ÁªÖظ´ÐòÁС£

SINES (short interspersed repeated sequences)   ¶ÌµÄ·ÖÉ¢ÖØ¸´Ë³Ðò£ºÔÚÕæºË»ùÒò×éÖдæÔڶ̶ø·ÖÉ¢¸ß¶ÈÖØ¸´Ë³Ðò£¬³¤500bpÒÔÏ£¬»ùÒò×éÖÐÓÐÊýǧ¸ö¿½±´£¬ÈçAlu ˳Ðò¡£

single-strand DNA binding (SSB) protein  µ¥Á´½áºÏµ°°×£ºÒ»ÖÖÁù¾ÛÌåµ°°×£¬¿ÉÓëDNAµ¥Á´½áºÏʹÆä²»»á¸´ÐÔ¡£ÔÚ¸´Öƹý³ÌÖд˵°°×ÆðÖØÒª×÷Óá£

sister chromatid  æ¢ÃÃȾɫµ¥Ì壺ȾɫÌ叴֯ºóÓÉ×ÅË¿Á£Á¬½ÓµÄÁ½Ìõæ¢ÃÃȾɫµ¥Ìå¡£

sister-chromatid exchange (SCE)  æ¢ÃÃȾɫµ¥Ìå½»»»£ºÔÚÓÐË¿·ÖÁÑ»ò¼õÊý·ÖÁÑʱæ¢ÃÃȾɫµ¥Ìå·¢ÉúµÄ½»»»£¬Æä½»»»ÆµÂÊ¿ÉÓÃÀ´¼ì²âÓÕ±ä¼Á¡£

site-specific recombination  Î»µãÌØÒìÐÔÖØ×é£ºÖØ×éµÄÒ»Àֻ࣬·¢ÉúÔÚÌØÒìDNAÇøÓò£¬Óж̵ÄͬԴ˳Ðò£¬ÖØ×éµÄµ°°×²»ÊÇrec ϵͳ¶øÊÇint µÈ£¬ÈçÊɾúÌål µÄ¶¨µã²åÈë¡£

small nuclear ribonucleoprotein particles (snRNP)  ºË΢СºËÌǺ˵°°×¿ÅÁ££ºÓÉС·Ö×ÓºËÄÚRNAºÍµ°°×¹¹³ÉµÄ¸´ºÏÌ壬ǰÌåmRNAÔÚÉÏÃæ½øÐмӹ¤¡£

small nuclear RNA(sn RNA)  ºËÄÚСRNA ¡¢Ð¡ºËRNA£ºÕæºËÉúÎïºËÖÐÓÉת¼²úÉúµÄËÄÖÖÖ÷ÒªRNA·Ö×Ó£¬ËüÓÃÓÚmRNAµÄ¼Ó¹¤¡£

solemoid structure  ÂÝÏ߹ܽṹ£ºÕæºËÉúÎïȾɫÌåµÄ¶þ¼¶½á¹¹£¬Ò»¼¶Ê±ÓɺËСÌåÏËË¿(10nm) ¹¹³É£¬¶þ¼¶½á¹¹ÓÉÓɺËСÌåÏËË¿½øÒ»²½ÂÝÐýÐγÉ30nmÂÝÏ߹ܣ¬Ã¿¸öÂÝÐýÓÉÁù¸öºËСÌå×é³É¡£

somatic cell hybridization  Ìåϸ°ûÔÓ½»£ºÁ½¸ö²»Í¬ÎïÖÖµÄÌåϸ°ûÈںϲúÉúÌåϸ°ûÔÓÖÖ¹©ÒÅ´«·ÖÎö¡£

somatic mutation  Ìåϸ°ûÍ»±ä£º·ÇÉúֳϸ°ûµÄÍ»±ä£¬ÔÚµ±´ú»á³öÏÖÍ»±äÌå°ßµã»òÇøÓò£¬´ËÌØÕ÷²»ÄÜÒÅ´«¡£

somatic-cell genetics Ìåϸ°ûÒÅ´«Ñ§¡¢ÎÞÐÔÒÅ´«Ñ§£ºÉæ¼°Ñо¿Ìåϸ°ûÍ»±ä¡¢·ÖÀà¡¢½»»»ºÍϸ°ûÈںϡ£

SOS repair   Ó¦¼±ÐÞ¸´¡¢ÇãÏò²î´íÐÞ¸´£ºµ±×ÏÍâÏßÕÕÉäÒýÆðËðÉËʱ£¬Í¬Ê±Ò²ÓÕµ¼SOSϵͳ£¬ÔÊÐíDNAºÏ³É¿Éͨ¹ýËðÉ˵ÄÄ£°å£¬µ«ÏàÓ¦µÄDNAƬ¶Ï²»ÊÇÕýÈ·µÄ£¬»á²úÉú²î´í£¬¾¡¹ÜÈç´Ë£¬Ï¸°û»ò¸öÌåÈÔÄÜ´æ»î¡£

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